Title :
Bid-scheduling of demand side reserve based on demand response considering carbon emission trading in smart grid
Author :
Ai Xin ; Liu Xiao ; Qiu Wen-jie ; Wang Yang
Author_Institution :
Dept. of Electr. & Electron. Eng., North China Electr. Power Univ., Beijing, China
Abstract :
Traditionally, reserves are deployed on generation side. As load demands increase greatly and carbon emission cap policy is implemented, reserve market will suffer from both poor reserve resources and extreme price strike. In this paper, a novel philosophy is presented which is called demand side reserve (DSR) based on demand response (DR) considering carbon emission trading (CET) under smart grid. Firstly, DSRs will be classified into three types by their characteristics and clearing cost models of them are given respectively. CET approach is employed here to describe an opportunity cost of DSRs and encourage customers to participate into carbon emission reduction. Secondly, a DSR-scheduling framework is developed which could realize the carbon emission quotas circulation from demand side to generation side under the CET system. Finally, simulation on a test system is used to illustrate the benefits of the proposed view.
Keywords :
demand side management; environmental economics; power generation scheduling; smart power grids; bid-scheduling; carbon emission cap policy; carbon emission reduction; carbon emission trading; demand response; demand side reserve; extreme price strike; smart grid; Batteries; Biological system modeling; Carbon dioxide; Load management; Scheduling; Smart grids; Smart grid; biding and scheduling model; carbon emission trading; demand response; demand side reserve;
Conference_Titel :
Critical Infrastructure (CRIS), 2010 5th International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4244-8080-7
DOI :
10.1109/CRIS.2010.5617534