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Overcurrent Relay Coordination Optimization with Partial Differentiation Approach for the Validation of Coordination Violation

机译:偏微分法的过电流继电保护协调性验证

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摘要

Conventional optimization methods for approaching overcurrent relay settings focus on minimizing the operating time of total relays at maximum fault current to accelerate the fault clearance time. However, to judge whether the entire relay curve of each relay pair always meets the constraints of 0.2 or 0.3 sec to the object curve is rather difficult as the curves may have different slopes. Additionally, the coordination time at the closest position for the curves of a relay pair should be checked for coordination validation. Therefore, this work presents a novel partial differentiation approach method to ensure that the curves of overcurrent relay coordination do not intersect with each other and violate the coordination time interval. Relay setting values are normally plotted on the time-current plane to verify the closing or intersection between relay pairs. Thus, a computer program based on the partial differentiation approach is also developed to calculate the current value of the intersection or closest position. Furthermore, a case study involving an industrial power system demonstrates the effectiveness of the proposed method by validating the results of optimization relay coordination.
机译:接近过流继电器设置的常规优化方法着重于最大故障电流下使整个继电器的工作时间最小化,以加快故障清除时间。但是,判断每个中继对的整个中继曲线是否始终满足对目标曲线的0.2或0.3秒的约束是相当困难的,因为这些曲线可能具有不同的斜率。此外,应检查继电器对曲线最近位置的协调时间以进行协调验证。因此,这项工作提出了一种新颖的偏微分方法,以确保过电流继电器协调的曲线不相交并违反协调时间间隔。继电器设定值通常绘制在时间-电流平面上,以验证继电器对之间的闭合或相交。因此,还开发了基于偏微分方法的计算机程序,以计算交叉点或最近位置的当前值。此外,一个涉及工业电力系统的案例研究通过验证优化继电器协调的结果证明了该方法的有效性。

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