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首页> 外文期刊>IEEE Transactions on Power Delivery >Optimal Multiobjective Planning of Large-Scale Passive Harmonic Filters Using Hybrid Differential Evolution Method Considering Parameter and Loading Uncertainty
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Optimal Multiobjective Planning of Large-Scale Passive Harmonic Filters Using Hybrid Differential Evolution Method Considering Parameter and Loading Uncertainty

机译:考虑参数和载荷不确定性的混合微分进化方法的大型无源谐波滤波器最优多目标规划

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摘要

This paper is used to investigate the optimal multiobjective planning of large-scale passive harmonic filters for a multibus system under abundant harmonic current sources using the hybrid differential evolution (HDE) method. The migrant and accelerating operations embedded in HDE are used to overcome traps of local optimal solutions and problems of time consumption. The design purposes are to minimize the total demand distortion of harmonic currents and total harmonic distortion of voltages at each bus. Filters loss, fundamental reactive power compensation, and constraints of individual harmonics are also considered. The search for the global optimal solution is applied to the harmonic problems in a steel plant, where both ac and dc arc furnaces are used and a static var compensator is installed. Three design schemes are compared to demonstrate the performance of HDE. Finally, expectations of objective function are used to present the effects of filter parameter detuning and furnace loading uncertainty.
机译:本文采用混合差分演化(HDE)方法,研究了在谐波电流源丰富的情况下,多总线系统大型无源谐波滤波器的最优多目标规划。 HDE中嵌入的迁移和加速操作用于克服局部最优解决方案的陷阱和时间消耗问题。设计目的是使谐波电流的总需求失真和每条母线电压的总谐波失真最小。还考虑了滤波器损耗,基本无功功率补偿以及单个谐波的约束。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,既使用了交流电弧炉,也使用了直流电弧炉,并安装了静态无功补偿器。比较了三种设计方案,以证明HDE的性能。最后,使用目标函数的期望值来表示滤波器参数失谐和炉负载不确定性的影响。

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