Online pre-fault FACTS tuning in smart grid for transient stability enhancement based on CCT

M. S. Mahadavi, S. Mehrnia, G. Gharehpetian, M. Abedi
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Abstract

Changing the steady state parameters of power system before fault occurrence is a new approach for increasing the transient stability of the system. With the presence of PMUs in smart grid and the possession of system information at any given time, FACTS devices can be set up online so that total critical clearing time (CCT) of the network is maximized as the most accurate transient stability criterion, by changing the system's steady state variables before the fault occurrence. Calculation of CCT requires iterative fault analysis and time-domain simulation of the network. In this paper, a novel prefault online optimal FACTS tuning is presented for transient stability enhancement of smart grid by CCT maximizing. Also the optimal type, number and location of FACTS devices are determined for long term planning. FACTS devices modeling and New England 39-bus system simulation are done by DIgSILENT software. DPL is used for CCT calculation and proposed approach implementation based on PSO algorithm. Also investment cost of these devices are considered for determining the optimal number of them.
基于CCT的智能电网暂态稳定性在线预校正
在故障发生前改变电力系统的稳态参数是提高系统暂态稳定性的新途径。由于智能电网中存在pmu,并且随时掌握系统信息,因此可以在线设置FACTS设备,通过改变故障发生前的系统稳态变量,使网络的总临界清除时间(CCT)最大化,成为最准确的暂态稳定判据。CCT的计算需要对网络进行迭代故障分析和时域仿真。针对CCT最大化增强智能电网暂态稳定性的问题,提出了一种新的故障前在线最优FACTS整定方法。此外,FACTS设备的最佳类型、数量和位置也是为了长期规划而确定的。利用DIgSILENT软件对FACTS设备进行建模,对新英格兰39总线系统进行仿真。将DPL用于CCT计算,并提出了基于粒子群算法的方法实现。同时考虑了这些设备的投资成本,以确定它们的最佳数量。
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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