Cyber and physical integration analysis for automated residential demand response in smart grid

Kunqi Jia, G. He, S. Fan, Guoying Lin, Shixiang Lu, Feng Pan
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引用次数: 2

Abstract

Compared with traditional analyses of automated demand response(ADR) which focus on optimal control strategies of physical system, this paper puts more emphasis on the interdependence and interplay of cyber and physical system in automated residential demand response. A heating project of a school and its control strategy are introduced as a typical scene of automated residential demand response. In order to establish a near real model of the heating project, communication reliability is taken into consideration and the network connectedness is modeled based on graph theory. The wireless channel model considering obstacles is established based on the Motley-Keenan Model and the correlation between receive signal strength index(RSSI) and packet receive rate(PRR) is derived according to experimental data. Then, the impact of the packet loss on the performance of the heating project is presented. To provide a reliable wireless communication network to support the heating project, this paper then proposed a greedy strategy based optimization algorithm of relay node deployment and the simulation results verify that the above algorithm can promote the overall system efficiency.
智能电网中自动化住宅需求响应的网络与物理集成分析
与传统的自动化需求响应分析侧重于物理系统的最优控制策略相比,本文更侧重于住宅自动化需求响应中网络和物理系统的相互依存和相互作用。介绍了某学校供热工程及其控制策略,作为住宅需求自动化响应的典型场景。为了建立供热工程的近真实模型,考虑了通信可靠性,并基于图论建立了网络连通性模型。基于Motley-Keenan模型建立了考虑障碍物的无线信道模型,并根据实验数据推导了接收信号强度指数(RSSI)与分组接收率(PRR)之间的相关性。然后,介绍了丢包对加热方案性能的影响。为了提供可靠的无线通信网络来支持供热工程,本文提出了一种基于贪心策略的中继节点部署优化算法,仿真结果验证了该算法能够提升系统整体效率。
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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