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首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Optimal placement and sizing of multiple APLCs using a modified discrete PSO
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Optimal placement and sizing of multiple APLCs using a modified discrete PSO

机译:使用改进的离散PSO优化布置和调整多个APLC的大小

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In this paper, a new method is proposed to optimize the placement and size of multiple Active Power Line Conditioners (APLCs). The objective is to minimize the investment cost, while the voltage total harmonic distortion and the individual harmonic distortion as constraints are maintained within the standard level. Since the APLC size is a discrete value, the objective function has a number of local minima. To deal appropriately with this, a Modified Discrete Particle Swarm Optimization (MDPSO) has been proposed. In this optimization method, DPSO has been developed by Genetic Algorithm (GA) operators in order to increase the diversity of the optimizing variables and decrease the risk of trapping in local minima.To evaluate the proposed method, two cases are studied. In case 1, the robustness and accuracy of the MDPSO are compared with other methods, DPSO, GA, Simulated Annealing (SA), and Discrete Nonlinear Programming (DNLP). The IEEE 14-bus distribution system is modified and used in this case. In case 2, a comparison is performed between the results obtained when the APLC cost function is assumed to be proportional with its rating, as done in almost all previously published papers, and when a more realistic APLC cost is considered. For this case, the IEEE 18-bus distribution system is employed as the test system. It is illustrated that the proposed method is more accurate and robust than other methods. This is also highlighted that the lowest cost planning is achieved when the realistic APLC cost function is used.
机译:本文提出了一种新的方法来优化多个有源电力线调节器(APLC)的布局和尺寸。目的是使投资成本最小化,同时将电压总谐波失真和单个谐波失真作为约束条件保持在标准水平内。由于APLC大小是离散值,因此目标函数具有多个局部最小值。为了适当地解决这一问题,提出了一种改进的离散粒子群优化算法(MDPSO)。在这种优化方法中,遗传算法(GA)运算符开发了DPSO,以增加优化变量的多样性并降低局部极小值的陷印风险。为了评估该方法,研究了两种情况。在情况1中,将MDPSO的鲁棒性和准确性与其他方法(DPSO,GA,模拟退火(SA)和离散非线性规划(DNLP))进行了比较。在这种情况下,将修改并使用IEEE 14总线分配系统。在情况2中,对几乎所有以前发表的论文都假定APLC成本函数与其评级成比例时所获得的结果进行了比较,并考虑了更现实的APLC成本。对于这种情况,采用IEEE 18总线分配系统作为测试系统。说明了所提出的方法比其他方法更加准确和健壮。还强调指出,使用实际的APLC成本函数可以实现最低的成本计划。

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