Optimal demand response scheduling with Stackelberg game approach under load uncertainty for smart grid

Jiang Chen, Bo Yang, X. Guan
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引用次数: 82

Abstract

This paper proposes a Stackelberg game approach to deal with demand response (DR) scheduling under load uncertainty based on real-time pricing (RTP) in a residential setup. We formulate the optimization problems for the service provider that acts as the leader and for the users who are the multiple followers, respectively. We derive the Stackelberg Equilibrium (SE) consisting of the optimal real-time electricity price and each user's optimal power consumption. Simulation results show the proposed DR scheduling not only can control the total power consumption, but also is beneficial to the service provider's revenue. Moreover, the load uncertainty increases the service provider's revenue and decreases each user's payoff.
负荷不确定下基于Stackelberg博弈的智能电网最优需求响应调度
提出了一种基于实时定价的住宅系统负荷不确定性下需求响应调度的Stackelberg博弈方法。我们分别对作为领导者的服务提供商和作为多个追随者的用户制定了优化问题。导出了由最优实时电价和各用户最优用电量组成的Stackelberg均衡。仿真结果表明,提出的容灾调度方案不仅可以控制总功耗,而且有利于服务提供商的收益。此外,负载的不确定性增加了服务提供商的收益,降低了每个用户的收益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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