Title :
A control loop approach for integrating the future decentralized power markets and grids
Author :
Yong Ding ; Neumann, Martin Alexander ; Budde, Matthias ; Beigl, Michael ; Da Silva, Per Goncalves ; Lin Zhang
Author_Institution :
Inst. of Telematics, Karlsruhe Inst. of Technol. (KIT), Karlsruhe, Germany
Abstract :
We are facing a restructuring of the power industry towards a smart grid. The vision of the smart grid represents not only the creation of intelligent power supply networks to allow efficient and reliable use of energy resources, but also the redesign of the market structure coupled with it. In order to develop a smart grid-ready power market, the integration of the physical reality of the power grid into the economic market model has been set as the first requirement. To address this problem, we present a feedback control model to interconnect the physical grid and the economic market in a decoupled control loop. Our proposed control loop consists of two subsystems, namely an Optimal Power Flow (OPF)-based physical system and a Continuous Double Auction (CDA)-based economic system. A dynamic coefficient matrix generated by the Locational Marginal Pricing (LMP) algorithm is adopted for the market clearing mechanism to account for the real-time power flow and transmission constraints. Finally, we demonstrate some initial experiments for a feasibility test of the interaction between the proposed physical power system and economic power market.
Keywords :
electronic commerce; energy resources; load flow control; matrix algebra; optimal control; power markets; power system interconnection; power transmission control; power transmission reliability; pricing; smart power grids; CDA; LMP algorithm; OPF; continuous double auction-based economic system; control loop approach; control model; economic power market model; energy resource reliability; future decentralized power market; intelligent power supply network; locational marginal pricing algorithm; market clearing mechanism; optimal power flow-based physical system; physical grid interconnection; power industry; real-time power flow; smart power grid-ready power market; transmission constraint; Power markets; Power system dynamics; Reactive power; Real-time systems; Smart grids;
Conference_Titel :
Smart Grid Communications (SmartGridComm), 2013 IEEE International Conference on
Conference_Location :
Vancouver, BC
DOI :
10.1109/SmartGridComm.2013.6688022