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Optimal Placement of STATCOM using Two Stage Algorithm for Enhancing Power System Static Security

机译:使用两阶段算法提高电力系统静态安全性的STATCOM的最佳位置

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In recent years, there has been a consistent increase in power demand which has resulted in heavy line flows, greater losses, and may threaten system security and stability. The power system consists of diversified loads with rapid variations in its reactive power requirement. STATCOM is a shunt compensator used for fast response when the reactive power of the load is changing rapidly. This paper presents STATCOM modeled as synchronous voltage source. In this work, optimum location and optimal parameters of STATCOM have been determined. The objective is to minimize system power loss by controlling device parameters. In this work, a two-stage approach is proposed for optimal placement of STATCOM. In the first stage, optima! location of STATCOM is obtained by generalized approach which is based on sensitivity analysis and in the second stage STATCOM parameter setting is done using Newton- Raphson (N-R) power flow technique. This approach is implemented on 14-bus test system. Voltages in the network, power flows and power loss before and after placing the STATCOM have been compared. It is observed that, after placement of STATCOM voltage profile is improved and power loss is minimized in the system. Proposed algorithm is implemented in MATLAB.
机译:近年来,有一致的电力需求增加,导致大量流量,更大的损失,可能威胁到系统的安全性和稳定性。电力系统包括多样化负载,其无功功率要求的快速变化。 Statcom是一种分流补偿器,用于当负载的无功功率迅速变化时,用于快速响应。本文将Statcom呈现为同步电压源。在这项工作中,已经确定了Statcom的最佳位置和最佳参数。目的是通过控制设备参数来最小化系统功率损耗。在这项工作中,提出了一种两级方法,以获得Statcom的最佳位置。在第一阶段,Optima! STATCOM的位置是通过基于灵敏度分析的广义方法获得的,并且在第二阶段中,使用牛顿(N-R)电流技术完成。这种方法是在14总线测试系统上实现的。比较了网络中的电压,电源流量和在放置Statcom之前和之后的功率损耗。观察到,在放置Statcom电压曲线之后,在系统中最小化电力损耗。提出的算法在MATLAB中实现。

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