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Research on Reliability of Distribution Network Based on Grid Cyber-Physical System and Telecontrol System

机译:基于电网网络物理系统和远程控制系统的分销网络可靠性研究

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Generally, we can speed up fault location procedures and reduce the recovery time via installing telecontrolled and automated sectionalizers in distribution networks. Besides, circuit breakers can also be installed in the network to reduce the average number of users' outages. However, the number of circuit breakers (CBs) is limited by the time selectivity. In smart grid perspective, the usage of telecontrolled CBs can overcome this limitation in a grid cyber-physical system (GCPS). In this paper, we provide a theoretical formulation to assess the impact of GCPS vulnerability and centralized telecontrol system(CTS) availability on networks. In order to solve this problem, we consider two cases where islanding is permitted or not. The results have shown that when the GCPS is vulnerable, islanding obviously reduces the outage duration. In addition, when the GCPS security level is very high, islanding can still reduce the outage rate.
机译:通常,我们可以通过在分销网络中安装Telecoontrolled和自动化截面,加速故障定位程序并减少恢复时间。此外,电路断路器还可以安装在网络中以减少用户的平均数量。然而,断路器(CBS)的数量受到时间选择性的限制。在智能电网角度来看,电信监控CBS的使用可以克服网格网络物理系统(GCPS)中的这种限制。在本文中,我们提供了理论制定,以评估GCPS漏洞和集中式电信系统(CTS)可用性对网络的影响。为了解决这个问题,我们考虑两种情况,允许孤岛。结果表明,当GCPS易受攻击时,岛屿明显降低了停机持续时间。此外,当GCPS安全级别非常高时,岛屿仍可降低中断率。

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