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首页> 外文期刊>Electric power systems research >Optimal resonance-free third-order high-pass filters based on minimization of the total cost of the filters using Crow Search Algorithm
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Optimal resonance-free third-order high-pass filters based on minimization of the total cost of the filters using Crow Search Algorithm

机译:使用Crow Search算法使滤波器的总成本最小化,从而获得最佳的无谐振三阶高通滤波器

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The most common damped filters (DFs) are the second-order, third-order, C-type, and double-tuned filters. Other DFs such as the first-order and band-pass filters exist, but their high operating losses considerably diminish their usage. In this paper, firstly, for the third-order damped filter with equal and unequal capacitors, the relations among their circuit parameters are derived. Secondly, the optimal design problem of the two third-order high-pass filters is formulated by regarding these expressions to minimize the filter cost taking into account both the investment and operating expenses. The total and individual harmonic distortion indices, power factor and the harmonic voltage amplification ratios which measure the filter's resonance damping capability, are considered as constraints. A recent metaheuristic optimization technique based on the intelligent behavior of crows, known as the Crow Search Algorithm (CSA), is employed for the solution of the formulated design problem. Further, a comparative analysis of the two designs of the third-order high-pass filters and a third-order C-type filter is presented. The results reveal that all the proposed filters guarantee no electrical resonance hazards while maintaining the allowable limits for the various performance indices of the system, load, and filter. Besides, the comparative analysis validates that the C-type filter provides higher power factor, system efficiency and transmission loss improvement than the other two filters, and that the proposed filters achieve almost the same voltage and current harmonic mitigation levels. The solution of the cost minimization problem reveals that the C-type filter and the third-order high-pass filter with equal capacitors have the worst and best resonance damping capabilities respectively, under the worst case conditions. Additionally, the filters with the lowest and highest cost are found as the third-order filter with unequal capacitors and the C-type one, respectively. Besides, the CSA is compared to the genetic algorithm (GA), and particle swarm optimization (PSO) techniques and the results show the fast convergence capability and the effectiveness of the proposed algorithm in solving the problem of optimal design of third-order resonance-free passive filters in distribution networks. (C) 2017 Elsevier B.V. All rights reserved.
机译:最常见的阻尼滤波器(DF)是二阶,三阶,C型和双调谐滤波器。存在其他DF,例如一阶滤波器和带通滤波器,但是它们的高工作损耗大大降低了其使用量。本文首先针对电容相等和不相等的三阶阻尼滤波器,推导了其电路参数之间的关系。其次,通过考虑这些表达式来制定两个三阶高通滤波器的最佳设计问题,以在考虑投资和运营费用的情况下最小化滤波器成本。限制滤波器的总谐波失真指数和个体谐波失真指数,功率因数和谐波电压放大比,这些均用于衡量滤波器的谐振阻尼能力。解决了设计问题时,采用了一种基于乌鸦智能行为的最新元启发式优化技术,称为乌鸦搜索算法(CSA)。此外,对三阶高通滤波器和三阶C型滤波器的两种设计进行了比较分析。结果表明,所有拟议的滤波器均不保证任何电气谐振危害,同时保持了系统,负载和滤波器各种性能指标的允许极限。此外,比较分析证明,C型滤波器比其他两个滤波器具有更高的功率因数,系统效率和传输损耗改善,并且所提出的滤波器可实现几乎相同的电压和电流谐波缓解水平。成本最小化问题的解决方案表明,在最坏情况下,具有相同电容器的C型滤波器和三阶高通滤波器分别具有最差和最佳的谐振阻尼能力。此外,成本最低和成本最高的滤波器分别被视为电容不相等的三阶滤波器和C型滤波器。此外,将CSA与遗传算法(GA)和粒子群优化(PSO)技术进行了比较,结果表明,该算法具有快速收敛的能力,并且能有效解决三阶共振优化设计问题。配电网中的免费无源滤波器。 (C)2017 Elsevier B.V.保留所有权利。

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