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Optimal Coordination of OCR with TCC Selection for Radial Industrial System Using Firefly Algorithm

机译:基于Firefly算法的径向工业系统OCR与TCC选择的最优配合。

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Overcurrent relay (OCR) is the primary protection in the distribution system. The advantages of OCR in the protection system is the ability to work coordinately in time, current, time-current grading. To attain the coordination setting of OCR, it requires a proper minimum operating time (TOP) and satisfied coordination time interval (CTI). However, attaining the coordination of OCR is quite challenging when distributed generations (DGs) are presented in the power system. The presence of DGs gives additional fault current contribution to the fault location. In this paper, Firefly Algorithm (FA) is proposed to solve the coordination of OCR. The FA will be used to obtain the time dial setting (TDS) with an objective to minimize the TOP and constraint of satisfying CTI for all possible network topologies and DGs operation. The proposed method is tested in a radial distribution system with active DGs of a real industrial petrochemical plant. The result of FA optimization is compared in different curve characteristics according to the IEC Standard 60255.
机译:过电流继电器(OCR)是配电系统中的主要保护。 OCR在保护系统中的优点是能够在时间,电流,时间-电流等级上协调工作。为了获得OCR的协调设置,它需要适当的最小操作时间(TOP)和满意的协调时间间隔(CTI)。但是,当电力系统中出现分布式发电(DG)时,要实现OCR的协调就非常困难。 DG的存在为故障位置提供了额外的故障电流贡献。本文提出了萤火虫算法(FA)来解决OCR的协调问题。 FA将用于获得时间拨号设置(TDS),其目的是使所有可能的网络拓扑和DG操作的TOP和约束满足CTI最小化。所提出的方法在具有实际工业石化厂活性DG的径向分配系统中进行了测试。根据IEC标准60255,将FA优化的结果在不同的曲线特征中进行比较。

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