基于可控性的总需求响应系统分析与设计

Kazuhiro Sato, S. Azuma
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引用次数: 0

摘要

我们解决了基于可控性的由各种消费者组成的总需求响应系统的分析和设计问题,以方便设计安装在消费者体内的自动需求响应机器,以自动响应电价变化。为此,我们引入了一个可控性指标来表示在选择最优电价时预期总用电量与供电量之间的最坏情况误差。该指标分析问题考虑的是在每个消费者的消费特征不固定的情况下,如何使整个消费群体的可控性最大化。相反,当群体中一部分人的消费特征是固定的时,设计问题考虑的是整个消费群体。通过解决分析问题,首先阐明了可控性、所有消费者的平均消费特征与可选择电价数量之间的关系。其中,可控性指标的最小值由可选择电价的个数决定。接下来,我们证明了设计问题可以通过简单的线性优化来解决。数值实验表明,我们的结果能够提高整个消费者群体的可控性。关键词:总需求响应,可控性,实时定价
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis and Design of Aggregate Demand Response Systems Based on Controllability
We address analysis and design problems of aggregate demand response systems composed of various consumers based on controllability to facilitate to design automated demand response machines that are installed into consumers to automatically respond to electricity price changes. To this end, we introduce a controllability index that expresses the worst-case error between the expected total electricity consumption and the electricity supply when the best electricity price is chosen. The analysis problem using the index considers how to maximize the controllability of the whole consumer group when the consumption characteristic of each consumer is not fixed. In contrast, the design problem considers the whole consumer group when the consumption characteristics of a part of the group are fixed. By solving the analysis problem, we first clarify how the controllability, average consumption characteristics of all consumers, and the number of selectable electricity prices are related. In particular, the minimum value of the controllability index is determined by the number of selectable electricity prices. Next, we prove that the design problem can be solved by a simple linear optimization. Numerical experiments demonstrate that our results are able to increase the controllability of the overall consumer group. key words: aggregate demand response, controllability, real-time pricing
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