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Power line communication (New Tecnology at Indonesia)

Power line communication (New Tecnology at Indonesia)
SOURCE FROM : http://en.wikipedia.org/wiki/Power_line_communication
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DSL technologies

Standard
ADSL
ANSI T1.413 Issue 2ITU G.992.1 (G.DMT)ITU G.992.2 (G.Lite)
ADSL2
ITU G.992.3/4ITU G.992.3 Annex JITU G.992.3 Annex L
ADSL2+
ITU G.992.5ITU G.992.5 Annex M
HDSL
ITU G.991.1
HDSL2

IDSL

MSDSL

PDSL

RADSL

SDSL

SHDSL
ITU G.991.2
UDSL

VDSL
ITU G.993.1
VDSL2
ITU G.993.2
Power line communication or power line carrier (PLC), also known as Power line Digital Subscriber Line (PDSL), mains communication, power line telecom (PLT), or power line networking (PLN), is a system for carrying data on a conductor also used for electric power transmission. Broadband over Power Lines (BPL) uses PLC by sending and receiving radio signals over power lines to provide access to the Internet.
Electrical power is transmitted over high voltage transmission lines, distributed over medium voltage, and used inside buildings at lower voltages. Powerline communications can be applied at each stage. Most PLC technologies limit themselves to one set of wires (for example, premises wiring), but some can cross between two levels (for example, both the distribution network and premises wiring).
All power line communications systems operate by impressing a modulated carrier signal on the wiring system. Different types of powerline communications use different frequency bands, depending on the signal transmission characteristics of the power wiring used. Since the power wiring system was originally intended for transmission of AC power, the power wire circuits have only a limited ability to carry higher frequencies. The propagation problem is a limiting factor for each type of power line communications.
Data rates over a power line communication system vary widely. Low-frequency (about 100-200 kHz) carriers impressed on high-voltage transmission lines may carry one or two analog voice circuits, or telemetry and control circuits with an equivalent data rate of a few hundred bits per second; however, these circuits may be many miles (kilometres) long. Higher data rates generally imply shorter ranges; a local area network operating at millions of bits per second may only cover one floor of an office building, but eliminates installation of dedicated network cabling.
Contents
[hide]
1 High-frequency communication (≥MHz)
1.1 Home networking (broadband)
1.2 Internet access (broadband over powerlines)
2 Medium frequency (kHz)
2.1 Home control (narrowband)
2.2 Low-speed narrow-band communication
2.3 High-speed narrow-band powerline communication - distribution line carrier
2.4 Transmitting radio programs
2.5 Utility applications
3 Low frequency (
3.1 Utility
4 Standards organizations
5 Broadband over power line (BPL)
5.1 Potential for interference
5.2 US FCC
5.3 Deployment
5.4 Concluded deployments
6 Automotive uses
7 Failure Scenarios
8 See also
9 References
10 External links
10.1 Associations or alliances
High-frequency communication (≥MHz)
High frequency communication may (re)use large portions of the radio spectrum for communication, or may use select (narrow) band(s), depending on the technology.
[edit] Home networking (broadband)
Power line communications can also be used to interconnect home computers, peripherals or other networked consumer peripherals, although there is not yet a universal standard for this type of application. Standards for power line home networking have been developed by a number of different companies within the framework of the HomePlug Powerline Alliance and the Universal Powerline Association.
[edit] Internet access (broadband over powerlines)
Broadband over power lines (BPL), also known as power-line Internet or powerband, is the use of PLC technology to provide broadband Internet access through ordinary power lines. A computer (or any other device) would need only to plug a BPL "modem" into any outlet in an equipped building to have high-speed Internet access. International Broadband Electric Communications or IBEC and other companies currently offer BPL service to several electric cooperatives.
BPL may offer benefits over regular cable or DSL connections: the extensive infrastructure already available appears to allow people in remote locations to access the Internet with relatively little equipment investment by the utility. Also, such ubiquitous availability would make it much easier for other electronics, such as televisions or sound systems, to hook up.
But variations in the physical characteristics of the electricity network and the current lack of IEEE standards mean that provisioning of the service is far from being a standard, repeatable process. And, the amount of bandwidth a BPL system can provide compared to cable and wireless is in question. The prospect of BPL could motivate DSL and cable operators to more quickly serve rural communities. [1]
PLC modems transmit in medium and high frequency (1.6 to 80 MHz electric carrier). The asymmetric speed in the modem is generally from 256 kbit/s to 2.7 Mbit/s. In the repeater situated in the meter room the speed is up to 45 Mbit/s and can be connected to 256 PLC modems. In the medium voltage stations, the speed from the head ends to the Internet is up to 135 Mbit/s. To connect to the Internet, utilities can use optical fiber backbone or wireless link.
The system has a number of issues. The primary one is that power lines are inherently a very noisy environment. Every time a device turns on or off, it introduces a pop or click into the line. Energy-saving devices often introduce noisy harmonics into the line. The system must be designed to deal with these natural signaling disruptions and work around them.
Broadband over power lines has developed faster in Europe than in the United States due to a historical difference in power system design philosophies. Power distribution uses step-down transformers to reduce the voltage for use by customers. But BPL signals cannot readily pass through transformers, as their high inductance makes them act as low-pass filters, blocking high-frequency signals. So, repeaters must be attached to the transformers. In the U.S., it is common for a small transformer hung from a utility pole to service a single house or a small number of houses. In Europe, it is more common for a somewhat larger transformer to service 10 or 100 houses. For delivering power to customers, this difference in design makes little difference for power distribution. But for delivering BPL over the power grid in a typical U.S. city requires an order of magnitude more repeaters than in a comparable European city. On the other hand, since bandwidth to the transformer is limited, this can increase the speed at which each household can connect, due to fewer people sharing the same line. One possible solution is to use BPL as the backhaul for wireless communications, for instance by hanging Wi-Fi access points or cellphone base stations on utility poles, thus allowing end-users within a certain range to connect with equipment they already have. In the near future, BPL may also be used as a backhaul for WiMAX networks.
The second major issue is signal strength and operating frequency. The system is expected to use frequencies of 10 to 30 MHz, which has been used for many decades by amateur radio operators, as well as international shortwave broadcasters and a variety of communications systems (military, aeronautical, etc.). Power lines are unshielded and will act as antennas for the signals they carry, and have the potential to interfere with shortwave radio communications. Modern BPL systems use OFDM modulation, which allows to mitigate interference with radio services by removing specific frequencies used. A 2001 joint study by the ARRL and HomePlug Powerline Alliance showed that for modems using this technique "in general that with moderate separation of the antenna from the structure containing the HomePlug signal that interference was barely perceptible at the notched frequencies" and interference only happened when the "antenna was physically close to the power lines" (however other frequencies still suffer from interference).
Much faster transmissions using microwave frequencies transmitted via a surface wave propagation mechanism called E-Line have been demonstrated using only a single power line conductor. These systems have shown the potential for symmetric and full duplex communication well in excess of 1 Gbit/s in each direction. Multiple WiFi channels with simultaneous analog television in the 2.4 and 5.3 GHz unlicensed bands have been demonstrated operating over a single medium voltage line. And, because it can operate anywhere in the 100 MHz - 10 GHz region, this technology can completely avoid the interference issues associated with use of shared spectrum while offering flexibility for modulation and protocols of a microwave system.
[edit] Medium frequency (kHz)
[edit] Home control (narrowband)
Power line communications technology can use the household electrical power wiring as a transmission medium. INSTEON and X10 are the two most popular[unreliable source?], de facto standards using power line communications for home control. This is a technique used in home automation for remote control of lighting and appliances without installation of additional control wiring.
Typically home-control power line communication devices operate by modulating in a carrier wave of between 20 and 200 kHz into the household wiring at the transmitter. The carrier is modulated by digital signals. Each receiver in the system has an address and can be individually commanded by the signals transmitted over the household wiring and decoded at the receiver. These devices may be either plugged into regular power outlets, or permanently wired in place. Since the carrier signal may propagate to nearby homes (or apartments) on the same distribution system, these control schemes have a "house address" that designates the owner.
Since 1999, a new power-line communication technology "universal powerline bus" has been developed, using pulse-position modulation (PPM). The physical layer method is a very different scheme than the modulated/demodulated RF techniques used by X-10. The promoters claim advantages in cost per node, and reliability.
[edit] Low-speed narrow-band communication
Narrowband power line communications began soon after electrical power supply became widespread. Around the year 1922 the first carrier frequency systems began to operate over high-tension lines with frequencies of 15 to 500 kHz for telemetry purposes, and this continues.[2] Consumer products such as baby alarms have been available at least since 1940.[3]
In the 1930s, ripple carrier signalling was introduced on the medium (10-20 kV) and low voltage (240/415V) distribution systems. For many years the search continued for a cheap bi-directional technology suitable for applications such as remote meter reading. For example, the Tokyo Electric Power Co ran experiments in the 1970s which reported successful bi-directional operation with several hundred units.[4] Since the mid-1980s, there has been a surge of interest in using the potential of digital communications techniques and digital signal processing. The drive is to produce a reliable system which is cheap enough to be widely installed and able to compete cost effectively with wireless solutions. But the narrowband powerline communications channel presents many technical challenges. A mathematical channel model and a survey of work can be found in reference no. 5[5].
Applications of mains communications vary enormously, as would be expected of such a widely available medium. One natural application of narrow band power line communication is the control and telemetry of electrical equipment such as meters, switches, heaters and domestic appliances. A number of active developments are considering such applications from a systems point of view, such as 'Demand Side Management'.[6] In this, domestic appliances would intelligently co-ordinate their use of resources, for example limiting peak loads.
Control and telemetry applications include both 'utility side' applications, which involves equipment belonging to the utility company (i.e. between the supply transformer substation up to the domestic meter), and 'consumer-side' applications which involves equipment in the consumer's premises. Possible utility-side applications include automatic meter reading(AMR), dynamic tariff control, load management, load profile recording, credit control, pre-payment, remote connection, fraud detection and network management, [7] and could be extended to include gas and water.
A project of EDF, France includes demand side management, street lighting control, remote metering and billing, customer specific tariff optimisation, contract management, expense estimation and gas applications safety [8].
There are also many specialised niche applications which use the mains supply within the home as a convenient data link for telemetry. For example, in the UK and Europe a TV audience monitoring system uses powerline communications as a convenient data path between devices that monitor TV viewing activity in different rooms in a home and a data concentrator which is connected to a telephone modem.
The most robust low-speed powerline technology uses DCSK technology available from Yitran Communications[dubiousdiscuss]. Renesas Technology licenses this know-how from Yitran and incorporates it in the single chip MCU + PLC family of devices known as M16C/6S. Renesas also licenses a state of the art network layer for AMR/AMM applications which can run on these devices.
[edit] High-speed narrow-band powerline communication - distribution line carrier
DLC uses existing electrical distribution network in the medium voltage (MV) — i.e., 11 kV, Low Voltage (LV) as well as building voltages. It is very similar to the powerline carrier. DLC uses narrowband powerline communication frequency range of 9 to 500 kHz with data rate up to 576 kbit/s. DLC is suitable (even in very large networks) for multiple realtime energy management applications. It can be implemented under REMPLI System as well as SCADA, AMR and Power Quality Monitoring System. DLC complies with the following standards: EN 50065 (CENELEC), IEC 61000-3 and FCC Part 15 Subpart B.
There are no interference issues with radio users or electromagnetic radiation. With external inductive or capacitive coupling, a distance more than 15 km can be achieved over a medium voltage network. On low voltage networks, a direct connection can be made since the DLC has a built-in capacitive coupler. This allows end-end communications from substation to the customer premises without repeaters.
The latest DLC systems significantly improve upon and differ from other powerline communication segments. DLC is mainly useful for last-mile and backhaul instrastucture that can be integrated with corporate wide area networks (WANs) via TCP/IP, serial communication or leased-line modem to cater for multi-services realtime energy management systems.
[edit] Transmitting radio programs
Sometimes PLC was used for transmitting radio programs over powerlines. When operated in the AM radio band, it is known as a carrier current system. Such devices were in use in Germany, where it was called Drahtfunk, and in Switzerland, where it was called Telefonrundspruch, and used telephone lines. In the USSR PLC was very common for broadcasting since 1930s years because of its low cost and accessibility. In Norway the radiation of PLC systems from powerlines was sometimes used for radio supply. These facilities were called Linjesender. In all cases the radio programme was fed by special transformers into the lines. To prevent uncontrolled propagation, filters for the carrier frequencies of the PLC systems were installed in substations and at line branches.
An example of the programs carried by "wire broadcasting" in Switzerland:
175 kHz Swiss Radio International
208 kHz RSR1 "la première" (French)
241 kHz "classical music"
274 kHz RSI1 "rete UNO" (Italian)
307 kHz DRS1 (German)
340 kHz "easy music"
[edit] Utility applications
Utility companies use special coupling capacitors to connect medium-frequency radio transmitters to the power-frequency AC conductors. Frequencies used are in the range of 24 to 500 kHz, with transmitter power levels up to hundreds of watts. These signals may be impressed on one conductor, on two conductors or on all three conductors of a high-voltage AC transmission line. Several PLC channels may be coupled onto one HV line. Filtering devices are applied at substations to prevent the carrier frequency current from being bypassed through the station apparatus and to ensure that distant faults do not affect the isolated segments of the PLC system. These circuits are used for control of switchgear, and for protection of transmission lines. For example, a protection relay can use a PLC channel to trip a line if a fault is detected between its two terminals, but to leave the line in operation if the fault is elsewhere on the system.
While utility companies use microwave and now, increasingly, fiber optic cables for their primary system communication needs, the power-line carrier apparatus may still be useful as a backup channel or for very simple low-cost installations that do not warrant installing fiber optic lines.
[edit] Low frequency ([edit] Utility
Power line carrier systems have long been a favorite at many utilities because it allows them to reliably move data over an infrastructure that they control. Many technologies are capable of performing multiple applications. For example, a communication system bought initially for automatic meter reading can sometimes also be used for load control or for demand response applications.
PLC is one of the technologies used in the automatic meter reading industry. Both one-way and two-way systems have been successfully used for decades. Interest in this application has grown substantially in recent history -- not so much because there is an interest in automating a manual process, but because there is an interest in obtaining fresh data from all metered points in order to better control and operate the system. PLC is one of the technologies being used in Advanced Metering Infrastructure (AMI) systems.
In a one-way (inbound only) system, readings "bubble up" from end devices (i.e. meters), through the communication infrastructure, to a "master station" which publishes the readings. A one-way system might be lower-cost than a two-way system, but also is difficult to reconfigure should the operating environment change.
In a two-way system (supporting both outbound and inbound), commands can be broadcast out from the master station to end devices (meters) -- allowing for reconfiguration of the network, or to obtain readings, or to convey messages, etc. The device at the end of the network may then respond (inbound) with a message that carries the desired value. Outbound messages injected at a utility substation will propagate to all points downstream. This type of broadcast allows the communication system to simultaneously reach many thousands of devices -- all of which are known to have power, and have been previously identified as candidates for load shed. PLC also may be a component of a smart power grid.
[edit] Standards organizations
Several competing standards are evolving including the HomePlug Powerline Alliance, Universal Powerline Association, European Telecommunications Standards Institute, and the IEEE. It is unclear which standard will come out ahead. X10 is a de facto standard also used by RadioShack's Plug'n'Power system. In 2006 the ITU-T began work on G.hn, a new home networking standard for operation over powerline, coax and phonewires.
Consumer Electronics Powerline Communications Alliance (CEPCA) (Sony, Mitsubishi and Panasonic) is developing a standard to realize coexistence between various Powerline technologies, available today. [3]
IEEE produces standards for several types of power line communications systems.
IEEE 643-2004 "Guide for Power-Line Carrier Applications" is a standard for communication over the transmission line network (above 69kV).
IEEE P1675 "Standard for Broadband over Power Line Hardware" is a working group working on hardware installation and safety issues.
IEEE P1775 "Powerline Communication Equipment - Electromagnetic Compatibility (EMC) Requirements - Testing and Measurement Methods" is a working group focused on PLC equipment, electromagnetic compatibility requirements, and testing and measurement methods.
IEEE P1901 "IEEE P1901 Draft Standard for Broadband over Power Line Networks: Medium Access Control and Physical Layer Specifications" is a working group for delivering broadband over power lines. The aim is to define medium access control and physical layer specifications for all classes of BPL devices - from long distance connections to those within subscriber premises. Many companies and standard bodies are participating in the developing IEEE P1901 standard including HomePlug Powerline Alliance, UPA, CEPCA and OPERA; this means a good chance for a unified power line communication standard in the future. Launch is expected in 2008.
IEEE BPL Study Group — "Standardization of Broadband Over Power Line Technologies" drove the creation of the BPL related P1901 working groups. It still meets time-to-time looking to create new working groups if needed. website
LonWorks powerline communication is used worldwide, for example for Home Automation, Street Lighting, Energy Management and Utility Metering. The protocol can also use other media, such as IP-based networks, and it is standardized through ISO/IEC. Powerline communication can use CENELEC A-band (for utilities) or C-band (for general use, e.g. by consumers). Related standards can be found on [4]
OPERA (Open PLC European Research Alliance) is a R&D Project with funding from the European Commission. It aims to improve the existing systems, develop PLC service, and standardise systems.
POWERNET is a R&D Project with funding from the European Commission. It aims to develop and validate a ‘plug and play’ Cognitive Broadband over Power Lines (CBPL) communications equipment that meet the regulatory requirements concerning electro-magnetic radiations and can deliver high data rates while using with low transmit power spectral density and working at low signal to noise ratio.
[edit] Broadband over power line (BPL)
[edit] Potential for interference
Power and telecommunications companies have started tests of the BPL technology, over the protests of the radio groups. After claims of interference by these groups, many of the trials were ended early and proclaimed successes, though the ARRL and other groups claimed otherwise. Some of the providers conducting those trials have now begun commercial roll-outs in limited neighborhoods in selected cities, with some level of user acceptance. There have been many documented cases of interference reported to the FCC by Amateur Radio users. Because of these continued problems, Amateur Radio operators and others filed a petition for reconsideration with the FCC in February 2005. Austria, Australia, New Zealand and other locations have also experienced BPL's spectrum pollution and raised concerns within their governing bodies. In the UK, the BBC has published the results of a number of tests (The effects of PLT on broadcast reception,PLT and Broadcasting, Co-existence of PLT and Radio Services) to detect interference from BPL installations. It has also made a video (Real Media format), showing broadcast of data and interference from in-home BPL devices.
In June 2007, NATO Research and Technology Organisation released a report titled HF Interference, Procedures and Tools (RTO-TR-IST-050) which concluded that widespread deployment of BPL may have a "possible detrimental effect upon military HF radio communications and COMINT systems."
New powerline modems are able to detect the existence of SW-Radio services at the location and time of operation by monitoring the ground noise at the socket where the modem is connected. The frequencies allocated by radio broadcast will be omitted from powerline communication. Such new technologies remove interferences from powerline modems to SW-Radio broadcast.
[edit] US FCC
On October 14, 2004, the U.S. Federal Communications Commission adopted rules to facilitate the deployment of "Access BPL" -- i.e., use of BPL to deliver broadband service to homes and businesses. The technical rules are more liberal than those advanced by ARRL and other spectrum users, but include provisions that require BPL providers to investigate and correct any interference they cause. These rules may be subject to future litigation.
On August 8, 2006 FCC adopted a memorandum opinion and an order on broadband over power lines, giving the go-ahead to promote broadband service to all Americans.[9][10] The order rejects calls from aviation, business, commercial, amateur radio and other sectors of spectrum users to limit or prohibit deployment until further study is completed. FCC chief Kevin Martin said that BPL "holds great promise as a ubiquitous broadband solution that would offer a viable alternative to cable, digital subscriber line, fiber, and wireless broadband solutions", and that BPL was one of the agency's "top priorities".[11]
New FCC rules require BPL systems to be capable of remotely notching out frequencies on which interference occurs, and of shutting down remotely if necessary to resolve the interference. BPL systems operating within FCC Part 15 emissions limits may still interfere with wireless radio communications and are required to resolve interference problems. A few early trials have been shut down [5][6], though whether it was in response to complaints is debatable.
The ARRL sued the FCC, claiming that the FCC violated the Administrative Procedure Act in creating its rules. On April 25, 2008, a US Court of Appeals agreed with the ARRL that the FCC violated the APA, especially by redacting data from the public that could have shed doubt on the FCC's decision.
"It is one thing for the Commission to give notice and make available for comment the studies on which it relied in formulating the rule while explaining its non-reliance on certain parts", D.C. Circuit Judge Judith Rogers wrote. "It is quite another thing to provide notice and an opportunity for comment on only those parts of the studies that the Commission likes best."[12]
[edit] Deployment
The following deployments are thought to be active as of December, 2007:
North America:
·
United States: The United Telecom Council publishes the FCC-mandated BPL Interference Resolution website, which provides a list of all BPL deployments in the US.
BPL vendors such as Ambient Corporation, Amperion Inc., Current Technologies LLC, Corinex Communications, IBEC Inc., and InovaTech have deployed BPL systems in limited areas. Duke Energy has entered into an $11 million contract to deploy Ambient Corporation's BPL over its systems, as of April 1, 2008. [7]
California: A plan was approved on April 27, 2006 allowing high-speed internet providers to begin testing delivery of online access using power lines in the state.[13]
Virginia: In October 2005, the city of Manassas began the first wide-scale deployment of BPL service in the nation, offering 10 Mbits/s service for under $30 USD per month to its 35,000 city residents, using MainNet BPL technology. On June 16, 2006, the FCC directed the Manassas BPL System to resolve the ARRL's interference complaints. The FCC minced no words in detailing what it wants the city and BPL operator COMTek to do to ensure its system complies with Part 15 rules governing BPL systems, and even hinted that it may shut down all or part of the system. [8]
·
Canada:
Quebec: As of 2005, PLC communication technology developed by Ariane Controls is being installed inside and outside existing buildings to control lights and other energy-hungry devices. The cheap devices allow energy consumption to be better managed, and so save much energy and bring a clear return on investment.

Western Europe:
·
Sweden: Vattenfall is using PLC technology at 1200 baud for automatic meter reading based on an Iskraemeco product. [9]

Central and Eastern Europe, and Eurasia:
·
The Russian Federation: Electro-com has deployed widely BPL/PLC technology and offers internet, telephone, and television services in Moscow, Nizhny Novgorod, and Krasnodar, and plans to extend coverage to main Russian cities. Based on DefiDev equipment with a DS2 chipset, the company provides different qualities of plug-and-play services for subscribers, from 512 Kbits/s service for 400 Rubles (about US$15), 1 Mbits/s for 500 Rubles (US$19), and up to 100 Mbits/s for 750 Rubles (US$29). The company has 35,000 subscribers and an annual growth of 15-20%, according to the financial newspaper Kommersant on September 21, 2007. The company has, however, halted operations in Moscow in September, 2008, having sold its client network to an IDSL internet provider. [14]
·
Romania: In January, 2006, the Ministry of Communications and Information Technology introduced a PLC trial in the rural locality of Band, MureÅŸ County, offering phone and broadband internet access for €7 per month. The technology was introduced to 50 households. If successful, the technology will be extended to other rural areas throughout Romania.[10]
·
Hungary: The first powerline service in Hungary was realized in September, 2003, in the Riverside apartment house in Budapest by 23Vnet Ltd. The PLC equipment was supplied by ASCOM Powerline. After four months the service was counting 100 users from 450 apartment owners. The bandwidth is 4.5 Mbits/s. [11]

Asia, Pacific, and Oceania:
·
InovaTech has been particularly active, with many successful trials in Australia, China, Hong Kong, Taiwan, Indonesia, Malaysia, and the Philippines. InovaTech recently widened its focus to include Europe, the Middle East and Africa, where it has undertaken several successful field trials and is believed to be readying commercial operations in several locations. InovaTech is also understood to have a long-term trial running in Russia. One of the most active solution providers, InovaTech is the first vendor to develop an integrated offering which integrates telecommunications and energy management capabilities.
·
The Philippines is deploying broadband over power lines nationwide.[15][16]
·
Indonesia is developing broadband over power line in apartment building, by PT. Broadband Powerline Indonesia since 2006. PT. BPI also produce data coupler to make broadband over powerline possible in three phases (R, S, T) with single master. The latest development can be seen in http://www.bpi.co.id/internet-kabel-listrik/

Africa and the Middle East:
·
Egypt: The Engineering Office for Integrated Projects (EOIP) has deployed PLC technology widely in Alexandria, Fayed, and Tanta. Based on a locally developed system, the company provides AMR for electricity utilities. Currently, the company has about 70,000 subscribers.
·
South Africa: Goal Technology Solutions (GTS) trialled the technology and is offering service in the suburbs of Pretoria, and plans to extend it to other areas. The tests were done with Mitsubishi equipment using a DS2 chipset, and the company claims a maximum throughput of 90 Mbits/s although initially only "512 Kbits/s ADSL equivalent speeds" are available. Now it uses DefiDev's equipment, and according to GTS's website, it will expand available bandwidth up to 5-20 Mbits/s.
·
Ghana:
Cactel Communications, Ltd. successfully deployed an MV solution pilot project in the Graphic Communications Group in Accra in June, 2005.
A Cactel Remote Energy Management System (REMS) pilot project for the Electricity Company of Ghana (ECG) is running a 40-user pilot project at the University of Ghana in Legon. The current project combines fiber, radio link, Wi-Fi and PLC to provide broadband internet access and telephony. It showcases the interoperability of PLC technology and the company's expertise in emerging market design and deployment. Cactel hopes to deploy nationally, and is in deliberations with the national stakeholders and with Ghana's Ministry of Communications (MoC).[12].
AllTerra Communications successfully implemented a pilot test of broadband over power lines in Akosombo. In partnership with VRA, this test involves demonstrating transmission of broadband from medium to low voltage signals. AllTerra is working with VRA to expand the pilot project to include essential grid management utilities that will help balance and manage the current electricity transmission throughout their various substations. Using IT as a catalyst for economic development, AllTerra is expanding into numerous areas throughout Ghana. [13]
·
Saudi Arabia:
ElectroNet has been working with the Saudi Electric Company since 2005 on a pilot project using broadband over power lines over medium voltage cables and linking into low voltage distribution within a shopping mall. The pilot project also integrates automatic meter readers. [14]
Powerlines Communications Co. Ltd. implemented an AMR pilot project for Saudi Electricity Company in 2006. The project was located in the city of Jeddah on the west coast of Saudi Arabia. Digital KWh meters were installed in parallel with analog KWh meters. Readings taken by the Saudi Electricity Company showed variations of less than 1%. A BPL pilot project was included. [15][16]
Saudi Arabian Computer Management Consultants (SACMAC) has signed a deal to become an official system integrator and distributor for Mitsubishi PLC. It is expected to become a great success, because the existing broadband service, monopolized by the Saudi Telecom Company, is expensive and has poor customer service (some clients report that company techs arrive months after ordering). SACMAC has declined to talk about specifics of availability and price but says it will start rolling out the service in a few months (as of May 2006) and its price will be lower than current broadband providers.
[edit] Concluded deployments
The following deployments have ended:
Australia, Tasmania: In November 2007, electricity retailer Aurora Energy ended its involvement with BPL and announced it was switching to Optical Fiber.[17] This ended their commercial trial begun in September 2005, offering BPL services to 500 homes in the suburb of Tolmans Hill near Hobart, which had followed a successful technological trial earlier that year.[18]
Portugal ended BPL/PLC deployments in the country in October 2006, reportedly for economic reasons. [17], [18], [19]
Russian Federation: In September 2008, Russia's only BPL provider Electro-com ended deployments in Moscow for economic reasons.
[20]
Spain: In May 2007 Iberdrola and Endesa (the main power companies in Spain) ended their projects to deploy PLC. [21]
United States: As of April 2007, Motorola has shuttered its Powerline LV Access BPL and reportedly plans to re-purpose the technology to a new system called Powerline MU, which is for use within multiple-unit dwellings. Motorola's system uses only residential-side low-voltage power lines for transmission to reduce the antenna effect, and successfully demonstrated frequency-notching for reduced potential for interference over the Amperion Inc. and Current Technologies LLC systems. Motorola invited the American Radio Relay League to participate with these tests, and even installed the Motorola system at their headquarters. Preliminary results were very positive with regard to interference, because the Motorola system does not use BPL on the powerlines leading up to the neighborhood. The BPL carrier is only used for the last leg of the trip from the pole to the house, and gets the signal to the pole via radio. This limits the interference to the area surrounding the last leg to the house.
The following other BPL deployments in the US are dismantled as of May 2008:[19
Automotive uses
Power-line technology enables in-vehicle network communication of data, voice, music and video signals by digital means over direct current (DC) battery power-line. Advanced digital communication techniques tailored to overcome hostile and noisy environment are implemented in a small size silicon device. One power line can be used for multiple independent networks. The benefits would be lower cost and weight (compared to separate power and control wiring), flexible modification, and ease of installation. Potential problems in vehicle applications would include the higher cost of end devices, which must be equipped with active controls and communication, and the possibility of intereference with other radio frequency devices in the vehicle or other places.
Prototypes are successfully operational in vehicles, using automotive compatible protocols such as CAN-bus, LIN-bus over power line (DC-LIN) and [DC-bus][22]. [20] [21]
LonWorks power line based control has been used for an HVAC system in a production model bus [23].
[edit] Failure Scenarios
There are many ways in which the communication signal may have error introduced into it. Interference, cross chatter, some active devices, and some passive devices all introduce noise or attenuation into the signal. When error becomes significant the devices controlled by the unreliable signal may fail, become inoperative, or operate in an undesirable fashion.
1. Interference: Interference from nearby systems can cause signal degradation as the modem may not be able to determine a specific frequency among many signals in the same bandwidth.
2. Signal Attenuation by Active Devices: Devices such as relays, transistors, and rectifiers create noise in their respective systems, increasing the likelihood of signal degradation.
3. Signal Attenuation by Passive Devices: Transformers and DC-DC converters attenuate the input frequency signal almost completely. "Bypass" devices become necessary for the signal to be passed on to the receiving node. A bypass device may consist of three stages, a filter in series with a protection stage and coupler, placed in parallel with the passive device.
[edit] See also
Digital subscriber line
Electric power transmission
HomePlug Powerline Alliance
HomePNA
KNX (standard)
List of PLC manufacturers
LonWorks
Multimedia over Coax Alliance
Power line carrier communication
Power over ethernet
Residential gateway
Smart Grid
Universal Powerline Association
[edit] References
1. ^ Denis Du Bois (2004-12-09). "Broadband over Powerlines (BPL) in a Nutshell" (HTML), energypriorities.com. Retrieved on 27 May 2008.
2. ^ K Dostert, 1997, Telecommunications over the Power Distribution Grid- Possibilities and Limitations Proc 1997 Internat. Symp. on Power Line Comms and its Applications pp1-9
3. ^ R Broadridge `Power line modems and networks' 4’th International Conference on Metering Applications and Tariffs for Electricity Supply IEE conf. Publ 300 1984 pp 294-296 (London UK: IEE)
4. ^ M Hosono et al, Improved Automatic meter reading and load control system and its operational achievement, 4th international conference on metering, apparatus and tariffs for electricity supply pp 90-94, 26-28 October 1982, IEE
5. ^ D Cooper, T Jeans, Narrowband, Low Data Rate Communications on the Low-Voltage Mains in the CENELEC Frequencies- Part I: Noise and Attenuation, IEEE Trans on Power Delivery, vol 17 no 3 July 2002 pp 718-723
6. ^ J Newbury, Communication requirements and standards for low voltage mains signalling, IEEE trans. on Power Delivery, Vol 13 no 1, Jan 1998, pp 46-49
7. ^ T J Sheppard 'Mains Communications- a practical metering system' 7th International Conference on Metering Applications and Tariffs for Electricity Supply pp 223-227 17-19 November 1992 (London UK: IEE 1992)
8. ^ G Duval, Applications of power line carrier at Electricite de France Proc 1997 Internat. Symp. on Power Line Comms and its Applications pp76-80
9. ^ FCC
10. ^ Memorandum Opinion and Order on Broadband Over BPL
11. ^ FCC chief Kevin Martin statement
12. ^ FCC dealt setback in broadband-over-power-lines push Tech news blog - CNET News.com
13. ^ Reardon, Marguerite (April 27, 2006). "Calif. regulators OK broadband over power line test", CNET News.com, CNET Networks. Retrieved on April 19, 2008
14. ^ "The Electro-com provider terminates the attempt to develop Internet via electric sockets in Moscow" (in Russian)
15. ^ Philippine News - Manila Standard Today - Venture formed to spark ‘rural revolution’ - may08_2006
16. ^ Manila Standard Today - Broadband project may trigger rise of Bataan - jan30_2006
17. ^ Aurora shifts focus to fibre in telecommunications strategy
18. ^ TasTel BPL: home of Broadband Over Powerlines
19. ^ a b BPL Database and Interference Information: U.S.
20. ^ "DC-LIN Over Power line"[1]
21. ^ Y. Koren, Y. Seri "Using LIN Over Powerline Communication to Control Truck and Trailer Backlights" - SPARC 2007 [2]
J. L. Blackburn (ed),Applied Protective Relaying, Westinghouse Electric Corporation (1976) Newark, New Jersey USA, no ISBN, Library of Congress Card No. 76-8060
X.Carcelle Les reseaux CPL, Eyrolles (2006), ISBN : 2-212-11930-5

REGULAR SOCIAL gathering whose members contribute to and take turns at winning an aggregate

For the lover and the site visitor arisan2009, there are several methods of supporting this site persistence. We not directly ask for so that you contribute to the number of the certain account, but with forms

The other support like for example to support our sponsors through our site:
http://arisan2009.blogspot.com/

Hmm... just meet you again I just remember have followed-follow store for this. For the fun of it aah! - Andi gets millions, in fact billions only by joining this social gathering in a short time. Only with Rupiah 10,000 then. Read the text below this, until being finished.

*** Integrity you bring LUCK ***
Dear Ladies & Gent ,Once visible on your marrow Will get a large amount of money in a short time, moreover in the middle of the storm low of economic at this time? Your Dream this immediately will be realised by making use of E-mail facilities. Okay, without long time, to bring about your dream I will offer to you a golden opportunity shape The Honesty social gathering and Continue the Feeling (AKSARA) through E-Mail. Important is learnt I am one of the participants in this horrifying social gathering that got results far above my dream originally (although that only around a third of the number of maximums that can be received). The letter that is seen by you this must be the letter that has in-forward by new participants that I the form after I get success. Definite you will ask, why I want troublesome himself circulates this e-mail after the success?

He replied simple, because I believe that fortune or luck that came suddenly can only last long if we also try to divide this luck to the other person. Will you do the same thing after being successful? That is up to yourself yourself! This social gathering will strengthen the friendship rope more than one the Indonesian Archipelago, only by money Rp.10.000,- You will receive billions rupiahs in time 3-5 weeks. Don't be startled and surprised when you receive this e-mail from the person that not you know beforehand. Moreover you better ought to be happy and happy, because by means of that suddenly, you receive this luck E-mail.

This game has been begun since 1985 and is sponsored or begun by a friend (the doctor) that is again new from his education in England. In England this game has become public, the success and really is liked, let alone being supported with the availability of E-mail facilities. I then once like you at this time, was not convinced and in no way believe if money Rp.10.000,- can become billions rupiahs. Moreover participants in this activity are people that not I have never known and gazed at the face beforehand. I only know the name, the E-mail address and the number of his account then. But after seeing and trying his condition, particularly the name and the e-mail address as well as the number of the account of his participants am clear enough, I am still being interested joining him. Think about it if trick ,opinion "Money is lost"and this of course better than to the pair of the lottery, gambling or the like that is forbidden and not necessarily could.

But also if in think by money Rupiahs. 10.000,-can produce more why ought not to be tried? After all of my conditions meet.... Ah am extraordinary!!! I am not convinced and do not believe in fact that is dealt with by me. After I am waiting around 4 weeks (a month more several days to be precise), my account begins to be filled transfer-transfer money from all over the corner of the land air.Tak his difference rain that descends from sky. After I check the balance of the my account ,real all of them numbering Rp.4.810.300.000,- (four billion eight hundred ten million three hundred thousand rupiahs). At the time of you read this you will definitely suppose that all this is masked cheating money multiplying. I will not your blame ,because that read continue this letter, then you will understand that this all is based on logic of the mathematical formula only and does not have the trick cheat that violate the law. And that at first great, this number can be folded dual when the number of e-mails that is sent (mean participation from this social gathering also multiple) increasingly From this Social Gathering finally can be utilised by me for my older brother who will enter the tertiary institution, in fact I can buy the house, buy the car and the rest of them I use for capital of new efforts. I pray it is hoped not again old this happens to yourself. Therefore, better you have faith and believe that this is not disguised the deception, everything causes a loss to you. Don't hesitant and very frightened of including the Name, the E-mail Address and Account number your Bank because of your savings account is safe will not be disturbed or decrease will be immediately improve quickly.

Don't wrong write the number of the Account of the your Bank, because this can cause a loss to yourself .Money that is transferred from all over the sender will enter the account that wrong .Play this strengthen and increase the friendship rope around us a group and the homeland. So not have the element politics not annoying safety ,not violate the LAW, even precisely we revived the feeling Gotong Royong and help each other to help interpersonal. The key from this game is honesty. Don't have told lies to himself. Don't take the position of participants that has beforehand from you because of the law karma will happen also to you.

Remember the ADDRESS of this LETTER of the SENDER's E-mail (you yourself) must be the same as your E-mail ADDRESS that will be included by you. And that is more important, the amount of money that is transferred is Rp.10.000, not more and not not all that.

THIS the KEY!!

Because of that this game is given by the name" the Honesty Social Gathering and Continue the Feeling"(AKSARA). Believe, without honesty from the participants then this game will fail the total and not there are those that receive maximal results!! Only with honesty then all will receive the appropriate reward. Believe, honesty and your participation will result produce

1. WAHYU NUGROHO ( protected)
Bank Lippo Branch. Lippo Plaza Sudirman JKT, Account Number 54015009336

2. STEFANUS LUHUR ( protected)
Bank BCA Branch Pantai Indah Kapuk Account Number .8740096231

3. ANDRY TANUWIDJAYA (protected)
Bank BCA Branch Sawah Besar, Account Number: 284-1000-6604. I NENGAH SRI ADI (
nengahsriadi@gmail.com)
Bank BRI Branch : 051 KCP UNDIKNAS, Account Number : 0591-01-002875-50-5

The CONDITION AND the conduct: Transfer money as big as Rupiah 10,000.- to the Account of participants's Bank No.1 (see the list of participants above), because this indeed his right. And you too will experience automatically when your name has been included as participants in the number 1. Once more, here is demanded by honesty and your sincerity.

The difference the list of participants as follows:
1. Remove participants in the position no.1 (after you transfer money Rp.10.000).
2. The difference of the position of participants no. 2 to no. 1.
3. Change the position of participants no. 3 to no. 2.
4. The difference of the position of participants no. 4 to no. 3. 5. For participants in the position no. 4 include the Name, the E-mail Address and Account Number your Bank.

Thoroughly the name and numbers of the account that is typed by you repeated, the mistake don't happen, because it can cause a loss to other participants or you. (to avoid the mistake better you use" Cut" and" Paste" in windows you. Send this E-mail to the other person totalling-very much (more often am increasingly good), who that is wanted by you the friend, the friend, relatives et cetera, of course after you include your name in the position of the number 4 After sending this e-mail, then am finished the task your send as soon as possible to the other person after you receive this e-mail. Increasingly fast, increasingly good, because increasingly fast also you get results. You are asked for to not greedy or do dishonest. Follow the guidance thoroughly. Is patient am waiting for 3 - 5 weeks. Use the common sense resulting from the flooding of the transfer in your account. Use this money for good and useful matters, especially education and religious duties.

The CALCULATION MAKSIMUM the RECEIPT of the SOCIAL GATHERING KEJUJURANDAN CONTINUE RASA

We take the analogy a person sends 40 emails: The POSITION your 4 send 40 e-mails to participants you. The POSITION 3 will in this position of your E-mail be spread to 1,600 people (40x40). The POSITION 2: in this position of your E-mail will be spread to 64,000 people (1600x40). The POSITION 1: in this position of your E-mail will be spread to 2,560,000 people (64.000x40). This means 2,560,000 times Rupiah 10,000 of = Rp25.600.000.000 (Twenty-five Billion Six Hundred Million Rupiah).

FANTASTIC not!!! Yes, the figure above am not results of the trick cheat but are based on the logical calculation of the mathematical formula. Remember, this not the business but the social gathering of money multiplying Gotong Royong with the number that almost not so (Rp.10.000,-) but make use of the number of Indonesian peoples who is big but also the network of the internet. Will be remembered!!! The figure above am results of the maximum, that is when all the participants really participate by sending this e-mail and transferring his money to people who are determined. Must be acknowledged, rarely the ideal matter happen like above not? Then let's see what happens when we take the approach pessimistic , that is represented from each participant only circulate this e-mail to 20 people and am like this

The CALCULATION PESIMISTIK the RECEIPT of the HONESTY SOCIAL GATHERING AND CONTINUE the FEELING We take the analogy a person sends 20 emails: The POSITION 4: you send 20 e-mails to participants you. The POSITION 3: in this position of your E-mail will disseminate to 400 people (20x20). The POSITION 2: in this position of your E-mail will be spread to 8000 people (400x20). The POSITION 1: in this position of your E-mail will be spread to 160,000 people (8.000x20). This means 160,000 people will send Rp.10.000 (ten thousand rupiah) to you = 160,000 times Rupiah 10,000 of = Rp1.600.000.000 (One Billion Six Hundred Million Rupiah) COMPLETELY NOT UGLY results!!

Our MESSAGE: By CAPITAL of HONESTY AND the CONVICTION! You can join this Social Gathering and are successful. Appreciate the person's other goodness that tried to make you happy. Once more, don't forget, if you copy the Name, the e-mail Address and No. the Account of participants's Bank must be the same and true. Please is researched again before being sent to other participants. Remember: the Person fails to be the person who has not taken the action and tries!!! Only with your conviction, you can reach what is wanted by you!!! Congratulations on the decision and your luck go along as well as in this Social Gathering!!! REMEMBER ONCE MORE!!! You only send money am enough to No. 1 (only just once... am easy not? ) after that forward this information to that is other totalling 40 names of the friend/your acquaintance after you include your name in the fourth place (always have only 4 names). Then the place 2 change to 1,urutan 3 change to 2,urutan 4 change to 3 ,& your name is in the fourth place (4). Remember 40 names, more

CONGRATULATIONS gather with the GOOD INTENTION God WILLING the LORD GRANT, AMIIIN............. Congratulations gather in: http://arisan2009.blogspot.com/ copy paste blog this in your email! It is hoped success

Rabu, 2008 Agustus 13

arisan2009


Bagi pencinta dan pengunjung situs arisan2009, ada beberapa cara untuk mendukung keberlangsungan situs ini. Kami tidak secara langsung meminta agar anda menyumbang ke nomor rekening tertentu, namun dengan bentuk-bentuk


dukungan lainnya seperti misalnya mendukung para sponsor kami lewat situs kami: http://arisan2009.blogspot.com/


(Bahasa Indonesia)




Hmm... baru nemu lagi aku baru ingat pernah ikut2 setor untuk ini.



Iseng aah! - Andi Dapatkan jutaan, bahkan milyaran hanya dengan mengikuti arisan ini dalam waktu singkat. Hanya dengan Rp 10.000 saja. Bacalah teks di bawah ini, hingga selesai.






***KEJUJURAN ANDA MEMBAWA KEBERUNTUNGAN ***

Para Netter Yth,Pernahkah terbayang di benak Anda akanmendapatkan sejumlah besar uang dalam waktu singkat, apalagi ditengah badai krismon saat ini? ImpianAnda ini akan segera terwujud dengan memanfaatkan fasilitas E-Mail.

Baiklah, tanpa berpanjang lebar, untuk mewujudkan impian Anda tersebut,saya akan menawarkan kepada Anda suatu kesempatan emas berupa


Arisan Kejujuran dan Sambung Rasa (disingkatAKSARA) lewat E-Mail.Perlu diketahui saya adalah salah seorang peserta arisan dahsyat ini yang mendapatkan hasil jauh di atas impian saya semula (walaupun itu hanya sekitar sepertiga dari jumlah maksimum yang bisa didapat).
Surat yang Anda lihat ini pastilah surat yang telah di-forward oleh partisipan-partisipan baru yang saya bentuk setelah saya mendapatkan kesuksesan.Pasti Anda akan bertanya, kenapa saya mau merepotkan diri mengedarkan e-mail ini setelah sukses?

Jawabnya sederhana, karena saya percaya bahwa rejeki atau keberuntungan yang datang tiba-tiba hanya bisa bertahan lama kalau kita juga berusaha membagi keberuntungan tersebut ke orang lain.



Apakah Anda akan melakukan hal yang sama setelah berhasil?
Itu terserah pada diri Anda sendiri! Arisan ini akan mempererat tali persaudaraan se-Nusantara, hanya dengan uang Rp.10.000,-
Anda akan memperoleh milyaran rupiah dalam waktu 3-5 minggu.

Jangan kaget dan heran bila Anda mendapat e-mail ini dari orang yang tidak Anda kenal sebelumnya. Bahkan Anda sebaiknya patut senang dan bahagia, karena dengan cara yang tiba-tiba, Anda mendapat E-Mail keberuntungan ini.

Permainan ini sudah dimulai sejak tahun 1985 dan disponsori atau dimulai oleh seorang teman (dokter)yang baru kembali dari pendidikannya di Inggris. Di Inggris permainan ini sudah memasyarakat, sukses dan sangat disukai, apalagi ditunjang dengan tersedianya fasilitas E-Mail.

Saya pun pernah seperti Anda saat ini, tidak yakin dan sama sekali tidak percaya kalau uang Rp.10.000,- bisa menjadi milyaran rupiah. Apalagi peserta dalam kegiatan ini adalah orang-orang yang tidak saya kenal dan belum pernah bertatap muka sebelumnya. Saya hanya tahu nama, alamat E-Mail dan nomor rekeningnya saja. Tetapi setelah melihat dan mencoba persyaratannya, lebih-lebih nama dan alamat e-mail serta nomor rekening pesertanya cukup jelas, saya jadi tertarik untuk mengikutinya. Pikir-pikir kalau tertipu,anggap saja "Uang Hilang"dan ini tentu saja lebih baik dari pada pasang lotre, judi atau sejenisnya yang haram dan belum tentu dapat.

Dan juga kalau dipikir dengan uang Rp. 10.000,-bisa menghasilkan lebih banyak kenapa tidak patut dicoba ?

Setelah semua persyaratan saya penuhi.... ah luar biasa!!! Saya tidak yakin dan tidak percaya pada kenyataan yang saya hadapi. Setelah saya menunggu sekitar 4 minggu (sebulan lebih beberapa hari tepatnya), rekening saya mulai dipenuhi transfer-tranfer uang dari seluruh penjuru tanah air.Tak ubahnya hujan yang turun dari langit. Setelah saya periksa saldo rekening saya,ternyata semuanya berjumlah Rp.4.810.300.000,- (empat milyard delapan ratus sepuluh juta tiga ratus ribu rupiah).

Pada saat Anda membaca ini Anda pasti akan menyangka bahwa semua ini adalah tipu-menipu berkedok penggandaan uang. Saya tidak akan menyalahkan Anda,karena itu bacalah terus surat ini, maka Anda akan mengerti bahwa ini semua didasarkan pada logika rumus matematika semata dan tidak ada tipu menipu yang melanggar hukum.

Dan yang terlebih hebat, jumlah tersebut dapat berlipat ganda bila jumlah E-Mail yang terkirim(berarti partisipasi dari arisan ini juga berlipat) semakin banyak.!!Hasil dari Arisan ini akhirnya dapat saya pergunakan untuk kakak saya yang akan masuk perguruan tinggi, bahkan saya dapat membeli rumah, beli mobil dan sisanya saya gunakan untuk modal usaha baru.

Saya berdoa semoga tidak lama lagi hal ini terjadi pada diri Anda. Karena itu, sebaiknya Anda yakin dan percaya bahwa ini tidak berkedok penipuan, apalagi merugikan Anda. Jangan ragu maupun takut-takut untuk mencantumkan Nama, Alamat E-Mail dan NomorRekening Bank Anda karena rekening tabungan anda aman tidak akan terganggu atau berkurang malahakan segera bertambah dengan cepat.

Jangan salah menuliskan Nomor Rekening Bank Anda,karena hal ini dapat merugikan diri Anda sendiri.Uang yang ditransfer dari seluruh pengirim akan masuk ke rekening yang salah.Permainan ini akan mempererat dan menambah tali persahabatan diantara kita sebangsa dan setanah air. Jadi tidak ada unsur Politik,tidak mengganggu keamanan,TIDAK MELANGGAR HUKUM, malah justru kita telah menghidupkan rasa gotong royong dan saling bantu membantu antar sesama. Kunci dari permainan ini adalah kejujuran.
Jangan pernah membohongi diri sendiri. Jangan mengambil posisi peserta yang telah lebih dahulu dari Anda karena hukum karma akan terjadi juga kepada anda.

Ingat ALAMAT E-MAIL PENGIRIM SURAT INI (ANDA SENDIRI) HARUS SAMA DENGAN ALAMAT E-MAIL ANDA YG AKAN ANDA CANTUMKAN.

Dan yang lebih penting, jumlah uang yang ditransfer adalah Rp.10.000, tidak lebih dan tidak kurang.


INILAH KUNCINYA !!

Oleh karena itu permainan ini diberi nama"Arisan Kejujuran & Sambung Rasa" (AKSARA). Percayalah, tanpa kejujuran dari para peserta maka permainan ini akan gagal total dan tidak ada yang mendapat hasil maksimal!! Hanya dengan kejujuran maka semua akan mendapat ganjaran yang setimpal. Percayalah, kejujuran dan kesertaan Anda akan membuahkan hasil

----------------------------------------------------

1. WAHYU NUGROHO ( protected)
Bank Lippo Cab. Lippo Plaza Sudirman JKT No.Rek. 54015009336

2. STEFANUS LUHUR ( protected)
Bank BCA cabang Pantai Indah Kapuk No. Rek.8740096231

3. ANDRY TANUWIDJAYA (protected)
Bank BCA Cabang Sawah Besar, No. Rek : 284-1000-660

4. I NENGAH SRI ADI (nengahsriadi@gmail.com)
Bank BRI Cabang : 051 KCP UNDIKNAS, No. Rek : 0591-01-002875-50-5

----------------------------------------------------

PERSYARATAN DAN TATA-CARA :

Transfer uang sebesar Rp 10.000,- ke Rekening Bank peserta No.1 (lihat daftar peserta di atas), karena ini memang haknya. Anda juga akan mengalami dengan sendirinya bila nama Anda sudah tercantum sebagai peserta nomor 1. Sekali lagi, disini dituntut kejujuran dan keikhlasan Anda.

Ubahlah daftar peserta sebagai berikut:

1. Hapus peserta posisi no.1 (setelah anda transfer uang Rp.10.000).

2. Ubah posisi peserta no. 2 menjadi no. 1.

3.Ubah posisi peserta no. 3 menjadi no. 2.

4. Ubah posisi peserta no. 4 menjadi no. 3.
5. Untuk peserta posisi no. 4 cantumkan Nama, Alamat E-Mail dan No.Rekening Bank Anda.


Teliti nama dan nomor-nomor rekening yang Anda ketik ulang, jangan terjadi kesalahan, karena dapat merugikan peserta lain atau Anda sendiri.(untuk menghindari kesalahan sebaiknya Anda gunakan"Cut" dan "Paste" pada windows anda. Kirimkan E-Mail ini kepada orang lain sebanyak-banyaknya


(semakin banyak semakin baik), siapapun yang Anda inginkan teman, sahabat, saudara dan lain-lain, tentu saja setelah Anda mencantumkan nama Anda pada posisi nomor 4

Setelah mengirimkan e-mail tersebut, maka selesailah tugas Anda.Kirimkan secepatnya kepada orang lain setelah anda menerima e-mail ini. Semakin cepat, semakin baik, karena semakin cepat pula Anda mendapatkan hasilnya. Anda diminta untuk tidak serakah atau berbuat curang. Ikuti petunjuk dengan seksama. Bersabarlah menunggu 3 - 5 minggu. Gunakan akal sehat akibat membanjirnya transfer direkening Anda. Gunakan uang tersebut untuk hal-hal yang baik dan berguna, terutama pendidikan dan ibadah.

PERHITUNGAN MAKSIMUM
PEROLEHAN ARISAN KEJUJURANDAN
SAMBUNG RASA



Kita ambil perumpamaan seorang mengirimkan 40 email:


POSISI 4 Anda mengirimkan 40 e-mail ini kepada peserta Anda.


POSISI 3 Pada posisi ini E-Mail Anda akan tersebar ke 1.600 orang (40x40).


POSISI 2 : Pada posisi ini E-Mail Anda akan tersebar ke 64.000 orang (1600x40).


POSISI 1 : Pada posisi ini E-Mail Anda akan tersebar ke 2.560.000 orang (64.000x40).


Ini berarti 2.560.000 x Rp 10.000 = Rp25.600.000.000 (Dua Puluh Lima Milyar Enam Ratus Juta Rupiah).


FANTASTIS bukan!!!


Ya, angka di atas adalah bukan hasil tipu menipu tetapi berdasarkan perhitungan logis formula matematika. Ingat, ini bukan bisnis penggandaan uang melainkan arisan gotong royong dengan jumlah yang nyaris tidak seberapa (Rp.10.000,-) tetapi memanfaatkan jumlah rakyat Indonesia yang besar dan juga jaringan internet.


AKAN TETAPI PATUT DIINGAT!!! Angka di atas adalah hasil maksimum, yaitu bila semua peserta benar-benar berpartisipasi dengan mengirimkan e-mail ini dan mentransfer uangnya ke orang-orang yang ditentukan. Harus diakui, jarang terjadi hal ideal seperti diatas bukan? Maka mari kita melihat apa yang terjadi bila kita ambil pendekatan pesimistik, yaitu dimisalkan dari setiap peserta hanya mengedarkan e-mail ini ke 20 orang saja dan demikian


PERHITUNGAN PESIMISTIK PEROLEHAN
ARISAN KEJUJURAN DAN SAMBUNG RASA


Kita ambil perumpamaan seorang mengirimkan 20 email:


POSISI 4 : Anda mengirimkan 20 e-mail ini kepada peserta Anda.


POSISI 3 : Pada posisi ini E-Mail Anda akantersebar ke 400 orang (20x20).


POSISI 2 : Pada posisi ini E-Mail Anda akan tersebar ke 8000 orang (400x20).


POSISI 1 : Pada posisi ini E-Mail Anda akan tersebar ke 160.000 orang (8.000x20). Ini berarti 160.000 orang akan mengirimkan Rp.10.000 (sepuluh ribu rupiah) kepada Anda = 160.000 x Rp 10.000 = Rp1.600.000.000 (Satu Milyard Enam Ratus Juta Rupiah)


SAMA SEKALI BUKAN HASIL YANG JELEK !!




PESAN KAMI:


Dengan MODAL KEJUJURAN DAN KEYAKINAN! Anda dapat mengikuti Arisan ini dan berhasil. Hargailah kebaikan orang lain yang telah berusaha membahagiakan Anda.

Sekali lagi, jangan lupa, apabila Anda menyalin Nama, Alamat e-mail dan No. Rekening Bank peserta harus sama dan benar. Harap diteliti kembali sebelum dikirimkan ke peserta lain. Ingat: Orang gagal adalah orang yang tidak pernah mengambil tindakan dan mencoba!!!Hanya dengan keyakinan Anda, Anda dapat mencapai apa yang Anda inginkan!!!Selamat atas keputusan dan keberuntungan Anda ikut serta dalam Arisan ini!!!

INGAT SEKALI LAGI !!!Anda hanya mengirim uang cukup pada No. 1 saja (hanya sekali saja...mudah bukan ?) Setelah itu forward informasi ini kepada yang lain sebanyak 40 nama teman/kenalan Anda setelah Anda mencantumkan nama Anda pada urutan keempat (selalu ada hanya 4 nama). Maka urutan 2 berubah menjadi 1,urutan 3 berubah menjadi 2,urutan 4 berubah menjadi 3 ,dan nama Anda ada diurutan keempat (4).

Ingat 40 nama, lebih banyak lebih baik.


SELAMAT BERGABUNG DENGAN NIAT YANG BAIK INSYA ALLAH TUHAN MENGABULKAN, AMIIIN.............

Selamat bergabung di: http://arisan2009.blogspot.com/
copy paste blog ini pada email anda!semoga sukses

Mengenai Saya