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Robust Design a PSO Based IPFC Output Feedback Damping Controller

机译:稳健设计基于PSO的IPFC输出反馈阻尼控制器

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摘要

In this study, on basis of a novel control scheme for Interline Power Flow Controller (IPFC), the dynamic performance of the IPFC is investigated. For this purpose, the Heffron-Phillips model of a Single machine power system is extracted and a novel feedback-based supplementary IPFC controller is applied to the power system. The Particle Swarm Optimization (PSO) algorithm which has a powerful potential to find the optimal solutions is employed to achieve the global optimum design of the feedback controller parameters. Thus, to better assessment, the potential of various IPFC control signals upon the power system's different operating conditions is investigated through the time domain simulation. The results in time-domain simulation analysis reveals that the designed PSO based IPFC controller tuned by the proposed objective function has an excellent capability in damping power system low frequency oscillations and enhance greatly the dynamic stability of the power systems. Moreover, the system performance analysis under different operating conditions show that the m, (magnitude of injected voltage) based controller is superior to the other based controller.
机译:在这项研究中,基于一种新的线间潮流控制器(IPFC)的控制方案,研究了IPFC的动态性能。为此,提取了单机电源系统的Heffron-Phillips模型,并将一种新颖的基于反馈的辅助IPFC控制器应用于电源系统。粒子群优化(PSO)算法具有强大的潜力,可以找到最优解,从而实现反馈控制器参数的全局最优设计。因此,为了更好地进行评估,通过时域仿真研究了各种IPFC控制信号在电力系统不同运行条件下的潜力。时域仿真分析的结果表明,所提出的目标函数对基于PSO的IPFC控制器的设计具有出色的阻尼能力,可以抑制电力系统的低频振荡,并大大提高了电力系统的动态稳定性。此外,在不同工作条件下的系统性能分析表明,基于m(注入电压的幅度)的控制器要优于其他基于控制器的控制器。

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