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A hybrid BFOA-MOL approach for FACTS-based damping controller design using modified local input signal

机译:使用修改后的本地输入信号进行基于FACTS的阻尼控制器设计的混合BFOA-MOL方法

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摘要

A hybrid Bacteria Foraging Optimization Algorithm and Many Optimization Liaisons (hBFOA-MOL) is employed in this paper to design a Flexible Ac Transmission Systems (FACTS)-based damping controller for power system stability improvement. The input signal to the FACTS-based damping controller is derived from the locally measurable line active power. The design problem of the proposed controller is formulated as an optimization problem and hBFOA-MOL algorithm is employed to search for the optimal controller parameters. At the outset, this concept is applied to a Static Synchronous Series Compensator (SSSC) connected in a single-machine infinite bus (SMIB) power system and then extended to a two-area four-machine power system. The performances of the proposed controllers are evaluated in SMIB and multi-machine power system subjected to various severe disturbances. To show the effectiveness and robustness of the proposed design approach, simulation results are presented and compared with both local and remote signals. It is observed that the proposed controller with modified local input signal exhibits a superior damping performance in comparison to both remote and local input signals.
机译:本文采用混合细菌觅食优化算法和许多优化联络人(hBFOA-MOL)来设计基于柔性交流传动系统(FACTS)的阻尼控制器,以提高电力系统的稳定性。基于FACTS的阻尼控制器的输入信号来自可本地测量的线路有功功率。将提出的控制器的设计问题表述为优化问题,并使用hBFOA-MOL算法搜索最优控制器参数。首先,该概念适用于连接在单机无限母线(SMIB)电力系统中的静态同步串联补偿器(SSSC),然后扩展到两区域四机电力系统。在遭受各种严重干扰的SMIB和多机电源系统中,对所提出的控制器的性能进行了评估。为了显示所提出的设计方法的有效性和鲁棒性,给出了仿真结果并与本地和远程信号进行了比较。可以看出,与远程和本地输入信号相比,具有修改的本地输入信号的拟议控制器表现出卓越的阻尼性能。

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