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首页> 外文期刊>IEE proceedings. Part C, Generation, Transmission, and Distribution >Application of combined feasible-direction method and genetic algorithm to optimal planning of harmonic filters considering uncertainty conditions
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Application of combined feasible-direction method and genetic algorithm to optimal planning of harmonic filters considering uncertainty conditions

机译:结合可行方向法和遗传算法在考虑不确定性条件的谐波滤波器优化规划中的应用

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摘要

The paper presents an approach of combining a feasible-direction method and a genetic algorithm (FDM + GA) to investigate the planning of large-scale passive harmonic filters. The optimal filter scheme can be obtained for a system under abundant harmonic-current sources where harmonic-amplification problems should be avoided. The design is to minimise the total demand distortion of harmonic currents and total harmonic distortion of load bus voltages. Filter loss, reactive-power compensation and constraints of individual harmonics can be considered in the design procedures. The constraints of harmonics with orders lower than the filter tuned points have been set stricter to avoid amplification of noncharacteristic harmonics. The search for the global optimal solution is applied to the harmonic problems in a steel plant, where both AC and DC are furnaces are used and a static Var compensator (SVC) is installed. Three design schemes are compared to demonstrate the performance of the proposed method. Finally, expectations and standard deviations of objective functions are used to present effects of filter-parameter detuning, loading uncertainty and changes of system impedance.
机译:本文提出了一种结合可行方向方法和遗传算法(FDM + GA)的方法来研究大型无源谐波滤波器的计划。对于在谐波电流源充足的情况下应避免谐波放大问题的系统,可以获得最佳滤波器方案。该设计将使谐波电流的总需求失真和负载母线电压的总谐波失真最小化。在设计过程中可以考虑滤波器损耗,无功功率补偿和单个谐波的约束。阶次低于滤波器调谐点的谐波约束已被严格设置,以避免放大非特性谐波。寻求全局最优解的方法适用于钢铁厂的谐波问题,在该厂中,AC和DC都是熔炉,并且安装了静态无功补偿器(SVC)。比较了三种设计方案,以证明所提出方法的性能。最后,目标函数的期望值和标准偏差用于表示滤波器参数失谐,负载不确定性和系统阻抗变化的影响。

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