Technology News
Pilot project to focus on bi-directional data link between electric vehicles and the power grid
IBM has teamed with American Honda Motor and Pacific Gas and Electric Company on a new pilot project that will allow communication between electric vehicles (EVs) and the power grid.
This project is aimed at demonstrating and testing an electric vehicle's ability to receive and respond to charge instructions based on the grid condition and the vehicle's battery state. With visibility into charging patterns, energy providers will have the ability to more effectively manage charging during peak hours and create consumer-friendly programs to encourage electric vehicle adoption.
The energy requirements for electric vehicles will challenge the current power grid as plug-in vehicle counts continue to grow to an expected 2.9 million worldwide by 2017. This project has the potential to ease the infrastructure and consumer concerns associated with the mass adoption of EVs, by adding another layer of agility to the EV charging process. This level of intelligence will help make charging seamless for consumers, while ensuring the electricity source is reliable and the infrastructure is stable.

This demonstration combines grid and vehicle data to create an individualized charging plan for Honda's Fit EV battery electric vehicles (BEV), using IBM's cloud based software platform. By using the existing in-vehicle communications system in the Honda Fit EV, the electric vehicle can interact with utilities and the grid, creating a direct channel for sending and receiving usage information that could improve local grid management.
"This pilot project with IBM and Honda will help us demonstrate that third-party providers have the systems and capabilities to help meet some of the challenges that electric vehicles could place on the power grid as their adoption increases in the coming years," said Saul Zambrano, senior director for consumer products for PG&E. "With updated charging patterns for EVs, we have the ability if needed, to shift demand to non-peak times to ensure the reliability of the grid so that we can continue to deliver safe, reliable and affordable energy to our customers."
Once plugged into a charge post, the Honda Fit EV initiates a charge request via the vehicles telematics system, an integrated telecommunication application that is often used for navigation. This request is sent to IBM's Electric Vehicle Enablement Platform where vehicle data such as battery state and grid data received from PG&E, is combined to create an optimized charge schedule, which is then communicated back to the vehicle in seconds. Using this aggregated data, the vehicle has the intelligence to charge to the level that is needed while factoring any current grid constraints.
Using real time and simulated data, the system will test and demonstrate the ability to alter, as well as adapt charging patterns based on grid conditions. This smart charging capability will enable energy providers to manage the power used by EVs during peak times by instructing vehicles to delay or adjust charging if required.
Additionally, the IBM EV platform can collate historical EV charging data and create a profile that can be used to forecast the location and duration of EV charge loads. For example, the program can determine how many EVs are plugged in one neighborhood and the time it will take for each to reach a full charge. This level of insight will allow utilities to optimize grid operations and help reduce the chance of outages – a possible concern as the number of EVs increase.
By communicating information directly to the vehicle, this project has the potential to significantly improve driver services. For example, the IBM's cloud based platform could provide charge post location information and availability directly to the EV, using the telematics and Satellite-Linked Navigation to guide the driver to the most convenient place to charge.
This project along with the recently announced EKZ Smartphone Application (app) pilot will help engage consumers and encourage more drivers to "plug in." The smartphone app shows the vehicles battery level, range of travel distance, vehicle location, and current energy costs in real time. This technology coupled with the ability to communicate directly with charging stations via a GPS system, will offer consumers a uniquely "connected" driving experience.
In addition to the two pilot projects, IBM is currently a member of the EcoGrid EU consortium, a group focused on developing an energy grid that uses at least 50 percent of renewable energy sources, such as wind power, solar energy and biogas. Instead of just using car batteries to balance the load like EDISON, the EcoGrid consortium is using appliances, heat pumps and electric water heaters to also store excess energy.
Visit IBM at www.ibm.com/press/smarterenergy
- Transfer-moulded super-mini dual in-line package power module rated up to 35A
- Fairchild Semiconductor offers innovative BLDC motor control reference design
- Smart grid sensor market looks set to double in size by 2014
- Electric mobility still light years away from mainstream, consultant says
- Schneider Electric collaborates with Saft to supply electrical energy storage systems
- IGBT application growth will drive the market to USD6bn by 2018 forecasts Yole
- 6.5 million euros European project AMBASSADOR aims for eco-friendly districts
- Amantys partners Fuji Electric to launch IGBT gate drivers for wind and solar markets
- EU antidumping duties could block Chinese modules out of the European Market
- 40-V MOSFETs deliver benchmark on-state resistance for heavy load applications
- Japan prepares to become world's largest solar revenue market in 2013
- Touch screen technology goes behind the display
- Smart grid sensor market looks set to double in size by 2014
- Single-chip solar energy harvester operates wireless mesh nodes
- Bosch drives down fuel consumption - in a salami technique
- World's lowest power Bluetooth smart chip is unveiled
- Solar industry capital spending hits seven-year low in 2013 but upturn is on the cards
- Lithium-ion batteries withstand 10.000 charging cycles
- Ceramic material drastically shrinks power supplies
- 300 percent increase in battery life with low power Bluetooth wireless speaker module
- 60V Buck-Boost Controller Drives High Power LEDs
- Energy Measurement and Security for the Smart Grid
- Dangers of Aftermarket Counterfeit Battery Packs
- High Voltage Surge Stoppers Ensure Reliable Operation During Power Surges
- Motor-Drive Design made Simple
- Adaptive Cell Converter Topology Enables Constant Efficiency in PFC Applications
- Micropower Isolated Flyback Converter with Input Voltage Range from 6V to 100V
- Derating of Schottky Diodes
- Heatsink Optimization
- High Performance ZVS Buck Regulator Removes Barriers To Increased Power Throughput
MOSFET
Analog
MOSFETs
UPS
Photovoltaic
STMicroelectronics
Microcontrollers
Linear Technology
Power Supply
Solar
Battery
International Rectifier
Power Supplies
Energy Harvesting
Maxim Integrated Products
Texas Instruments
National Semiconductor
Microcontroller
Power
Vishay Intertechnology
Smart Grid
Analog Devices
NXP Semiconductors
Power Management
IMS Research
Batteries
Diodes
Intersil
Fairchild Semiconductor
DC/DC Converters
This site contains articles under license from EETimes Group , a division of United Business Media LLC.


