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Hybrid DA-PSO approach for optimal location and parameter settings for TCSC controller in power system

机译:电力系统中TCSC控制器的最佳位置和参数设置的混合DA-PSO方法

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摘要

Thyrist or controlled series compensator (TCSC) configuration in power system comprises of controlled reactors in parallel with sections of a capacitor bank. This combination offers smooth control of basic frequency capacitive reactance over a wide range. Its benefits include eradication of resonance risks, stability improvements and so on, offering dynamic power flow control. However, the TCSC controllers face issues, while determining their optimal locations and parameter settings (sizing). Hence, this study intends to solve these problems by considering three objectives, namely, congestion minimisation, investment cost minimisation and increased transient stability. The objectives are achieved by optimising various locations of the bus system, where the TCSC has to be placed, and its sizing. From the optimised results, the best solution is chosen to attain the abovementioned objectives. The presented scheme obtains the best solution by a hybridised model, exploiting the dragonfly algorithm (DA) and the particle swarm optimisation (PSO), called PSO-dependent step vector for DA. Finally, the proposed approach is compared with the conventional schemes by analysing the outcomes for two benchmark systems, namely, IEEE 24 and IEEE 9 test bus systems.
机译:电力系统中的晶闸管或受控串联补偿器(TCSC)配置包括与电容器组的截面并联的受控反应器。该组合在宽范围内提供了对基本频率电容的平稳控制。它的好处包括消除共振风险,稳定性改进等,提供动态功率流量控制。但是,TCSC控制器面临问题,同时确定其最佳位置和参数设置(大小)。因此,本研究打算通过考虑三个目标,即充血最小化,投资成本最小化和瞬态稳定性增加来解决这些问题。通过优化总线系统的各个位置来实现目标,其中TCSC必须放置,其尺寸。从优化的结果,选择最佳解决方案以获得上述目标。所呈现的方案通过杂交的模型获得最佳解决方案,利用蜻蜓算法(DA)和粒子群优化(PSO),称为DA的PSO依赖性步进载体。最后,通过分析两个基准系统的结果,即IEEE 24和IEEE 9测试总线系统,将所提出的方法与传统方案进行比较。

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