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Fault Clearance and Transmission System Stability Enhancement using Unified Power Flow Controller

机译:故障间隙和传输系统稳定性增强利用统一电源流量控制器增强

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Fault current introduces voltage and reactive power imbalances which are major problems in power systems. This study shows the ability of Unified Power Flow Controller (UPFC) to clear a single line to ground fault and improves transmission system stability. The device under review is one of the most advanced classes of Flexible Alternating Current Transmission System (FACTS) devices. A 30-bus transmission line system is modelled with MATLAB/Simulink software. Two cases were simulated to evaluate the performance of UPFC. In Case 1, the 30-bus network system is modelled and simulated without a compensating device whilst Case 2, the system is modelled with UPFC. The system models are designed to have a single line to ground fault with resistance 0.010Ω and ground resistance of 0.001Ω occurring at bus 1. The fault is expected to cause instability in the system and be cleared after 0.04s in both cases. The simulated results of the two cases were compared to determine the performance of UPFC in improving the voltage stability and power profile of the system. The results show that UPFC has the ability of stabilizing voltage and power profile of transmission system. The study has thus, increased insight on the use of the device in transmission system stability and control.
机译:故障电流引入电源系统中存在的电压和无功功率不平衡。本研究显示了统一电力流量控制器(UPFC)清除地面故障的单线的能力,提高了传输系统稳定性。审查的设备是柔性交流传输系统(事实)设备中最先进的类别之一。一个30公交车传输线系统采用MATLAB / SIMULINK软件建模。模拟两种情况以评估UPFC的性能。在壳体1中,在没有补偿装置的情况下,在没有补偿装置的情况下,建模和模拟30-BUS网络系统,该系统用UPFC建模。系统型号设计成具有电阻的接地故障,电阻在总线上发生0.010Ω,电阻为0.001Ω,预计故障将在系统中造成不稳定,两种情况下0.04秒后被清除。比较两种情况的模拟结果,以确定UPFC在提高系统的电压稳定性和功率分布方面的性能。结果表明,UPFC具有稳定传动系统电压和功率曲线的能力。因此,研究已经增加了对传输系统稳定性和控制装置的使用的洞察力。

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