An Optimal Planning Model for Cyber-physical Active Distribution System Considering the Reliability Requirements

Changjian Wang, Chutian Yu, Xunhu Yin, Lijun Zhang, Xiang Yuan, Mingxia Fan
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Abstract

Since the cyber and physical layers in the distribution system are deeply integrated, the traditional distribution system has gradually developed into the cyber-physical distribution system (CPDS), and the failures of the cyber layer will affect the reliable and safe operation of the whole distribution system. Therefore, this paper proposes an CPDS planning method considering the reliability of the cyber-physical system. First, the reliability evaluation model of CPDS is proposed. Specifically, the functional reliability model of the cyber layer is introduced, based on which the physical equipment reliability model is further investigated. Second, an optimal planning model of CPDS considering cyber-physical random failures is developed, which is solved using the Monte Carlo Simulation technique. The proposed model is tested on the modified IEEE 33-node distribution system, and the results demonstrate the effectiveness of the proposed method.
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考虑可靠性要求的信息物理主动配电系统最优规划模型
由于配电系统中的网络层和物理层深度融合,传统的配电系统逐渐发展为网络-物理配电系统(CPDS),网络层的故障将影响整个配电系统的可靠、安全运行。为此,本文提出了一种考虑网络物理系统可靠性的CPDS规划方法。首先,建立了CPDS的可靠性评估模型。具体来说,介绍了网络层的功能可靠性模型,并在此基础上进一步研究了物理设备的可靠性模型。其次,建立了考虑网络物理随机故障的CPDS最优规划模型,并利用蒙特卡罗仿真技术对其进行了求解。在改进的IEEE 33节点配电系统上对该模型进行了测试,结果表明了该方法的有效性。
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