This site uses cookies to improve your experience. To help us insure we adhere to various privacy regulations, please select your country/region of residence. If you do not select a country, we will assume you are from the United States. Select your Cookie Settings or view our Privacy Policy and Terms of Use.
Cookie Settings
Cookies and similar technologies are used on this website for proper function of the website, for tracking performance analytics and for marketing purposes. We and some of our third-party providers may use cookie data for various purposes. Please review the cookie settings below and choose your preference.
Used for the proper function of the website
Used for monitoring website traffic and interactions
Cookie Settings
Cookies and similar technologies are used on this website for proper function of the website, for tracking performance analytics and for marketing purposes. We and some of our third-party providers may use cookie data for various purposes. Please review the cookie settings below and choose your preference.
Strictly Necessary: Used for the proper function of the website
Performance/Analytics: Used for monitoring website traffic and interactions
Hitachi ABB PowerGrids has launched Grid-eMotion Fleet, a scalable, modular and fully customizable solution for large-scale EV charging of smart public and commercial transport. Grid-eMotion Fleet comes in standard containers that integrate the grid connection and charging systems.
Energy Laboratory (NREL) has successfully demonstrated vehicle-to-grid (V2G) capabilities using IPC’s bi-directional Battery Converter. IPC’s Battery Converter will provide bi-directional power between the EV. battery and a 480Vac powergrid. NREL successfully integrated and.
Fraunhofer ESK is developing underlying communication methods for a uniform energy management system for powergrids and electric vehicles. The reference system is intended to help charging station and e-vehicle manufacturers and grid operators implement the communication standards and test their products for standards compliance.
SAE International has published the J2836/1 standard: Use Cases for Communication between Plug-In Vehicles and the Utility Grid. The standard establishes use cases for two-way communication between plug-in electric vehicles and the electric powergrid, for energy transfer and other applications. Earlier post.)
The US Commerce Department’s National Institute of Standards and Technology (NIST) awarded EnerNex Corporation a contract to help NIST sustain the accelerated development of the hundreds of compatible standards that will be required to build a secure, interoperable smart electric powergrid.
China Southern PowerGrid (CSG) and Better Place opened their Switchable Electric Car Experience Center in Guangzhou’s Pearl River New Town. CSG will promote the development of national technical standards and build a smart EV network. Earlier post.).
Thomas Built Buses is currently the only school bus manufacturer to offer DC (direct current) fast charging architecture as standard equipment. Jouley can charge in approximately three hours and can supply power back to the powergrid using vehicle-to-grid (V2G) technology.
Nissan Motor Corporation has begun testing in Japan of a system to use electric vehicle technology to help powergrids cope with peaks in demand. Demand response is a strategy to make powergrids more efficient by modifying consumers’ power consumption in consideration of available energy supply. to 8:00 p.m.
An updated roadmap for the Smart Grid is now available from the National Institute of Standards and Technology (NIST), which recently finished reviewing and incorporating public comments into the NIST Framework and Roadmap for Smart Grid Interoperability Standards, Release 2.0. Just as its draft version did, the final 2.0
have been selected as contractors for a joint US-Japan collaboration supporting a Smart Grid project on the Hawaiian island of Maui. Part of the demonstration plan includes utilization of the EVs for grid-balancing services ( earlier post ). Smart Grid Model at a Substation with One Distribution Grid Level in Kihei (Hitachi).
Toyota Motor Corporation (TMC), in cooperation with Duke Energy and non-profit industry initiative Energy Systems Network (ESN), will participate in a joint smart-grid pilot project in Indiana, the United States. The aim of the project will be power-grid load-equalization and the establishment of an optimized vehicle-charging scheme.
The Honda e units will be used as part of a car-sharing fleet in a trial which uses the Honda e’s bi-directional charging function to feed energy back to the grid when the vehicles are not in use for sharing. To allow bi-directional charging, Honda is also providing 35 Honda Power Manager units. Earlier post.)
As more power stations adopted the clocks, the frequency regulation allowed them to share electricity and create an interconnected powergrid. And Warren, who eventually solved the grid-frequency problem, was actually working on a different puzzle when he came across the answer. regulated over 95 percent of all U.S.
It will not only set new standards in cargo handling, but also in climate-friendly energy supply. The hydrogen-powered mtu fuel cell solutions supply electrical power as soon as the public powergrid reaches its limits, for example for the on-board power supply of ships berthed in the port or in the event of other load peaks.
The Sacramento Municipal Utility District (SMUD) and the Tokyo Electric Power Company Holdings (TEPCO), Japan’s largest electric utility, will collaborate on vehicle-grid integration technologies with the purpose of accelerating transportation electrification and decarbonization.
The Audi e-tron’s charging system is the first on-board EV system to use the new communication standard. At the “Plugfest E-Mobility” at the Audi plant in Brussels, developers are testing cross-industry compatibility before the EEBUS standard for energy communication is introduced in February.
Researchers at the US Department of Energy’s National Renewable Energy Laboratory (NREL) released a technical report that provides an interim test plan for evaluating vehicle-to-grid (V2G) applications. Once validated, these procedures could become the basis for testing standards for V2G applications. 1547 tests.
Better Place and China Southern PowerGrid Co. China Southern Grid is an important partner in a huge market that is moving quickly toward the mass-market development of electric cars and is embracing battery switch as the primary means of range extension. —China Southern Grid Chairman Zhao Jianguo.
Following the start of the project in September 2015, a redox flow battery system (2 MW x 4 hours) was constructed for a powergrid at a substation in San Diego. Demonstration will now be carried out to evaluate the management of surplus electricity and regulation of grid frequency and voltage fluctuation. Background.
Endesa, Spain’s largest utility, has developed a prototype V2G (Vehicle to Grid) charger that enables electric vehicles to return stored power to the grid. These projects also evaluate the impact of a large-scale introduction of EVs on the powergrid.
Smart Grid electric transportation applications summary communications diagram. The US Commerce Department’s National Institute of Standards and Technology (NIST) released for public review a report that identifies issues and proposes priorities for developing technical standards and an architecture for a US Smart Grid.
A realistic pilot test conducted by Porsche, the grid operator TransnetBW and consulting firm Intelligent Energy System Services (IE2S), has demonstrated that electrical balancing power can be stored in the high-voltage batteries of an intelligent swarm of electric cars. —Dr Rainer Pflaum, CFO TransnetBW.
Mitsubishi Corporation (MC), Mitsubishi Motors Corporation (MMC) and Mitsubishi Electric Corporation (MELCO) have agreed to collaborate on a smart grid research project incorporating electric-vehicle-to-X (e.g., MC, MMC and MELCO have worked on Smart Grid systems to utilize these batteries since last March. home, factory, etc.)
ORNL’s wireless charging technology transferred power between the truck and a charging pad across the 11-inch gap using two electromagnetic coupling coils at the demonstration. The system transferred electricity from the powergrid to the vehicle battery terminals at more than 92% efficiency. —Omer Onar.
The simulation study demonstrates that efficient control of the energy storage system not only reduces the energy costs of the entire wireless charging road system but also alleviates the pressure produced by the wireless charging load on the existing powergrid.
To Nick de Vries, chief technology officer at the solar-energy developer Silicon Ranch , a transformer is like an interstate on-ramp: It boosts the voltage of the electricity that his solar plants generate to match the voltage of grid transmission lines. Their very durability shoulders the grid. The company isnt alone in its quandary.
By rapidly ramping up and down in response to fluctuations in wind and solar power, the technology will enable the integration of more renewable resources into the powergrid, GE says. The FlexEfficiency 50 Combined Cycle Power Plant. —Paul Browning, vice president thermal products for GE Power & Water.
million in development funding from the US Department of Energy (DOE) to support research aimed at significantly reducing the current costs of electrical vehicle (EV) chargers and developing “smart” charging capabilities that support powergrid efficiency and consumer demand. In 2012, Siemens was awarded $1.6 Appliance connection.
Within the framework of the initiative, the E-Mobility Group is bringing together the main players—e-truck customers, powergrid operators, energy suppliers, charging hardware manufacturers and charging software providers—thus promoting shared infrastructure solutions for truck customers within the network.
Funded through a $25-million DOE award, the public-private consortium aims to enable power-sector decarbonization through 2035. Maintaining grid reliability amid increasing renewable energy penetration involves fundamental changes to power system operation and the resources leveraged to provide grid services.
The major driver for the project is the need to decarbonize the electrical grid, protect it from cybersecurity attacks and make it more resilient. We will be replicating the entire California powergrid on one campus. The goal is to make the testbed available to outside research teams and industry by 2025.
Jouley is powered by Proterra electric vehicle technology and configured with 220 kWh of total energy capacity, a two-speed transmission and a TBB-estimated operating range of up to 134 miles. TBB is the only school bus manufacturer to offer DC fast charging architecture as standard equipment. —Proterra CEO Ryan Popple.
Such equipment is scattered widely throughout powergrids as a way to stop the flow of electrical current in an emergency. Hundreds of thousands of circuit breakers dot powergrids globally, and nearly all of the high voltage ones are insulated with SF 6. locationa gold standard certification facility.
The project seeks to address multiple challenges related to the expansion of EVs, including the repurposing of used EV batteries, the expected impact of EV demand and renewable energy on the nation’s utility operators and the integration of EV batteries as a storage solution for the electric grid.
The majority of EV service equipment (EVSE) will be networked and managed via information technology (IT) and communications systems that will aggregate power demand and enable a coordinated response to changing grid conditions. Pike Research anticipates that worldwide investment in electric vehicle IT systems will reach $1.5
trafficThis scenario is highly desirable to automotive manufacturers, who harbor great concerns about battery warranty if vehicle-to-grid discharging is allowed. V2GFull varies not only the charging of the vehicle battery, but also can vary the discharging of the battery back into the powergrid.
independent from the bulk powergrid (i.e., SPIDERS uses the conceptual designs of an Energy Surety Microgrid developed by Sandia National Laboratories, and has four specific goals for electric power surety at US military installations: To protect critical. infrastructure from power loss. infrastructure from power loss.
Through Power to X (PTX), the conversion of renewable energy to other usable forms, green e-methanol is an optimal solution for Denmark to store excess renewable power, stabilize its national powergrid, and produce a sustainable carbon neutral renewable fuel.
Active standards work. During the SAE 2009 World Congress in Detroit, Gary Kissel of General Motors presented an update of hybrid, plug-in hybrid, and electric vehicle standards being revised or developed by the Society of Automotive Engineers (SAE) Hybrid Standards Committee. by Jack Rosebro. Click to enlarge. J1772: Charging.
CSE will work closely with KnGrid , a leader in vehicle-grid communications, to create a standardized platform that optimizes charging benefits for both grid operators and vehicle owners. Part 2: Network and application protocol requirements. Part 3: Physical layer and Data Link Layer requirements.
ABB and Volvo Buses are partnering to co-develop and to commercialize electric and hybrid buses with open standards-based direct current (DC) fast charging systems. The system is based on internationally certified standards. Developing e-bust fast-charging standards.
As part of that effort, the leaders committed to reduce greenhouse gas (GHG) emissions from light- and heavy-duty vehicles by aligning fuel efficiency and/or GHG emission standards out to 2025 and 2027, respectively. In addition, the SmartWay freight transportation program will be extended to Mexico. Short-lived climate pollutants.
Both options will utilize silicon-carbide inverters, making this advanced technology standard on the Fisker Ocean Sport, Fisker Ocean Ultra, Fisker Ocean Extreme, and Fisker Ocean One. The company calls these technologies PowerCar, PowerGrid, and PowerHouse.
Working with Fermata Energy, a vehicle-to-grid (V2G) systems company, Nissan North America is launching a new pilot program under the Nissan Energy Share initiative which leverages bi?directional directional EV charging technology to partially power its North American headquarters in Franklin, TN, and its design center in San Diego, CA.
We organize all of the trending information in your field so you don't have to. Join 5,000+ users and stay up to date on the latest articles your peers are reading.
You know about us, now we want to get to know you!
Let's personalize your content
Let's get even more personalized
We recognize your account from another site in our network, please click 'Send Email' below to continue with verifying your account and setting a password.
Let's personalize your content