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A Simple Strategic SVCs Placement Scheme for Enhanced Voltage Stability Margin

机译:一种简单的战略性SVC放置方案,以提高电压稳定裕度

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Due to the disparity between supplied and demanded reactive power, the bus voltages deviate from their nominal voltage levels, leading to voltage instability. An effective reactive power compensation can prevent the voltage instability issues in power systems, and ensures a reliable and resilient transmission system. Static Var Compensators (SVCs) are widely used as reactive power compensators to prevent voltage stability issues. Owing to their higher cost, SVCs are placed in the large power system networks after meticulous planning to reap maximum benefit with limited number of devices. In this work, a methodology is proposed to quantify the effectiveness of a potential SVC location using four voltage stability criteria, i.e., least electrical distance, higher line flow, maximum angular difference and higher modal participation. Candidate SVC locations are evaluated using these four criteria via means of an integrated Fuzzy Analytic Hierarchy Process (FAHP) and Fuzzy Technique for Order of Preference by Similarity to Ideal Solution (FTOPSIS) methodology. The critical locations obtained using this methodology form the potential locations for SVC placement. The effectiveness of SVCs in enhancing the static voltage stability margins is then assessed for IEEE 14-bus and Reduced NRPG 246-bus systems.
机译:由于所提供的无功功率与所要求的无功功率之间存在差异,因此母线电压会偏离其标称电压水平,从而导致电压不稳定。有效的无功功率补偿可以防止电力系统中的电压不稳定问题,并确保可靠而有弹性的传输系统。静态无功补偿器(SVC)被广泛用作无功功率补偿器,以防止出现电压稳定性问题。由于成本较高,在经过精心计划后,SVC被放置在大型电力系统网络中,以利用数量有限的设备获得最大的收益。在这项工作中,提出了一种方法,该方法使用四个电压稳定性标准来量化潜在SVC位置的有效性,即最小电气距离,更高的线路流量,最大的角度差和更高的模态参与度。使用这四个标准,通过集成的模糊分析层次过程(FAHP)和基于与理想解决方案的相似性的优先顺序模糊技术(FTOPSIS)方法,来评估候选SVC的位置。使用此方法获得的关键位置形成了SVC放置的潜在位置。然后针对IEEE 14总线和精简NRPG 246总线系统评估了SVC在增强静态电压稳定性裕度方面的有效性。

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