A General Method to Calculate the Critical Fault Clearing Time of A Synchronous Generator

Yuanyuan Ma, Juncan Wang
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引用次数: 1

Abstract

Fault ride-through (FRT) capability of a synchronous generator is required by most grid codes. The PCC voltage and critical fault clearing time (CFT) are two important parameters to assess the FRT capability. Current studies are mainly based on repetitive simulations, which are very time-consuming. Thus, a general method is proposed to calculate PCC voltage and CFT of a synchronous generator connected to an infinite bus through a linear network. First, equivalent Thevenin voltage and reactance before, during and after the fault are calculated respectively. Then, by applying the equal-area criteria, critical clearing angle can be obtained, and CFT can be calculated by improved Euler method. Finally, a four-bus network is used as a case study. The results are in consistent with the simulations and the theoretical analysis.
同步发电机关键故障清除时间的一般计算方法
大多数电网规范都要求同步发电机具有故障穿越能力。PCC电压和临界故障清除时间(CFT)是评估FRT能力的两个重要参数。目前的研究主要是基于重复的模拟,这是非常耗时的。因此,提出了一种计算同步发电机通过线性网络连接到无限母线的PCC电压和CFT的通用方法。首先分别计算故障前、故障中、故障后的等效特文宁电压和电抗;然后,应用等面积准则,得到临界清除率,并采用改进的欧拉法计算CFT。最后,以四总线网络为例进行了研究。仿真结果与理论分析相吻合。
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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