A modified SFCL model performance investigation for a three-phase transmission network

Ritesh Rawat, P. Chaudhari, V. Kale
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Abstract

The demand for increased energy consumption has led to the integration of distributed renewable energy sources with the existing transmission and distribution systems. It has helped in reducing dependency on conventional power generating sources. However, the integration of such sources has led to a rise in fault current levels. This causes overriding the capacity of existing switch-gear and protection devices. Superconducting fault current limiters (SFCL) have come up as a solution to mitigate the effect of rising fault current levels causing mal-operation of the protection devices. In this paper, a modification in the model of an existing Hybrid-SFCL has been proposed to enhance its electrical characteristics. A three-phase power system is simulated to show its efficacy. The results of the existing and modified Hybrid-SFCL models are compared. The analysis has been done in MATLAB/Simulink to validate the proposed model and its performance has been investigated.
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三相输电网的改进SFCL模型性能研究
对能源消耗增加的需求导致了分布式可再生能源与现有输配电系统的整合。它有助于减少对传统发电来源的依赖。然而,这些电源的集成导致了故障电流水平的上升。这会导致覆盖现有开关设备和保护装置的容量。超导故障限流器(SFCL)是一种缓解故障电流水平上升造成保护装置误动作影响的解决方案。本文提出了一种改进现有混合动力sfcl模型的方法,以提高其电气特性。通过对三相电力系统的仿真,验证了该方法的有效性。比较了现有和改进的Hybrid-SFCL模型的计算结果。在MATLAB/Simulink中对所提出的模型进行了分析验证,并对其性能进行了研究。
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