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Robust and adaptive coordination approaches for co-optimization of voltage dip and directional overcurrent relays coordination

机译:用于电压倾度和定向过电流继电器协调的强大和自适应协调方法

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摘要

Selectivity constraints are very crucial in directional overcurrent relays (DOCRs) coordination and could be affected by the change of short circuit current (SCC), which itself is highly dependent on network topology change (NTC). In this paper, robust and adaptive coordination approaches are used to achieve an acceptable level of power quality (PQ) and selective operation of DOCRs under NTC conditions and to find the optimal setting of DOCRs. Also, considering the importance of voltage dip, an objective function consisting of three main parts is used. The first part is defined to minimize the tripping time of relays, and the other parts are set to minimize the voltage dip energy index and voltage dip duration. Due to the importance of impedance of fault current limiter, it is considered as an optimization variable along with the time setting multiplier, setting current, and operation characteristic of DOCRs. Based on the simulation results, using robust and adaptive coordination, the DOCRs have selective operation during NTC, and voltage dip improvement is achieved.
机译:选择性约束在方向过电流继电器(DOCRS)协调中非常重要,并且可能受短路电流(SCC)的变化影响,这本身高度依赖于网络拓扑变化(NTC)。在本文中,鲁棒和自适应协调方法用于实现可接受的电能质量(PQ)和NTC条件下DOCRS的选择性操作,并找到DOCRS的最佳设置。此外,考虑到电压倾度的重要性,使用由三个主要部件组成的目标函数。第一部分被定义为最小化继电器的跳闸时间,并且设置另一部分以最小化电压DIP能量指数和电压倾度持续时间。由于断层电流限制器阻抗的重要性,它被认为是优化变量以及DOCRS的时间设置乘法器,设定电流和操作特性。基于仿真结果,使用鲁棒和自适应协调,DOCRS在NTC期间具有选择性操作,并且实现了电压拨款改进。

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