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Optimal multiobjective design of robust power system stabilizers using genetic algorithms

机译:基于遗传算法的鲁棒电力系统稳定器的多目标优化设计。

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Optimal multiobjective design of robust multimachine power system stabilizers (PSSs) using genetic algorithms is presented in this paper. A conventional speed-based lead-lag PSS is used in this work. The multimachine power system operating at various loading conditions and system configurations is treated as a finite set of plants. The stabilizers are tuned to simultaneously shift the lightly damped and undamped electromechanical modes of all plants to a prescribed zone in the s-plane. A multiobjective problem is formulated to optimize a composite set of objective functions comprising the damping factor, and the damping ratio of the lightly damped electromechanical modes. The problem of robustly selecting the parameters of the power system stabilizers is converted to an optimization problem which is solved by a genetic algorithm with the eigenvalue-based multiobjective function. The effectiveness of the suggested technique in damping local and interarea modes of oscillations in multimachine power systems, over a wide range of loading conditions and system configurations, is confirmed through eigenvalue analysis and nonlinear simulation results.
机译:本文提出了一种基于遗传算法的鲁棒多机电力系统稳定器(PSS)的最优多目标设计。在这项工作中使用了常规的基于速度的超前滞后PSS。在各种负载条件和系统配置下运行的多机电源系统被视为一组有限的设备。调整稳定器可将所有植物的轻度阻尼和无阻尼的机电模式同时移至s平面中的指定区域。制定了一个多目标问题,以优化一组目标函数,包括阻尼系数和轻度阻尼机电模式的阻尼比。鲁棒地选择电力系统稳定器参数的问题被转换为优化问题,该问题通过具有基于特征值的多目标函数的遗传算法解决。通过特征值分析和非线性仿真结果,证实了所建议技术在多机器负载系统和系统配置范围内阻尼多机动力系统的局部和区间振动模式的有效性。

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