Back to Results
First PageMeta Content
Electric power distribution / Energy storage / Electric vehicles / Smart grid / Electrical grid / Smart meter / Electricity market / Sustainable energy / Vehicle-to-grid / Energy / Electric power / Technology


Journal of Artificial Intelligence Research813 Submitted 08/11; publishedTheoretical and Practical Foundations of Large-Scale Agent-Based Micro-Storage in the Smart Grid
Add to Reading List

Document Date: 2011-12-18 23:26:13


Open Document

File Size: 3,24 MB

Share Result on Facebook

Company

Nissan / Toyota / Agent-Based Systems / Cox / Intel / GS Yuasa / /

Country

Netherlands / France / United States / United Kingdom / Spain / /

Currency

GBP / /

/

Facility

Computer Science University of Southampton Southampton / Dam et al. / Dinorwig Power Station / /

IndustryTerm

stored electricity / electricity market / wireless broadband internet / storage devices / control energy storage / analytical solution / electricity changes / electricity prices / conventional closedform solutions / energy dashboard5 / software agents / electricity suppliers / large-scale storage devices / electricity storage strategies / system start using storage devices / electricity market simulations / electricity grid / energy storage capacity / storage device / communication technologies / battery devices / large chemical flow batteries / energy storage agents / use electricity / smart electricity grid / use energy / electricity storage / iterative algorithms / electricity distribution / electricity markets / energy usage / energy / renewable electricity generation / home energy management systems / micro-storage devices / microstorage devices / stored energy / grid-supplied electricity / electric vehicle battery technology / electricity / autonomous storage management technology / implementation technology / real-time electricity pricing / higher electricity generation costs / storage solutions / electricity generation / smart metering infrastructure / energy cost / renewable energy generation facilities / typical electricity usage profiles / storage systems / intelligent electricity delivery network / power-hungry devices / electricity micro-storage devices / personalised home energy management / sufficient energy / potent energy management technology / storage technologies / real-time price / electricity storage device / electricity grids / sustainable energy provision / micro-storage management / chemicals / energy users / /

Organization

US Department of Energy / Electronics and Computer Science University of Southampton Southampton / Agents / Interaction and Complexity Group School of Electronics / AI Access Foundation / /

Person

Nicholas R. Jennings pv / /

Product

Prius / Chevrolet Volt / /

PublishedMedium

Journal of Artificial Intelligence Research / /

Technology

storage technologies / electric vehicle battery technology / wireless broadband / implementation technology / intelligent agent / autonomous storage management technology / communication technologies / potent energy management technology / 2.1 Energy Storage Technologies / artificial intelligence / /

URL

http /

SocialTag