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Optimal number and location of power quality monitors for power system

机译:电力系统电能质量监控器的最佳数量和位置

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This work presents a method for solving optimal number and location of power quality monitors in transmission power systems. The problem is modeled as a multi-objective problem to acquire a tradeoff between the data redundancy and the economical efficiency. A multi-objective optimal placement model is built, in which the monitoring locations and the number of monitors are taken as objects. Adaptive genetic algorithm is used to solve the formulated optimal model problem. The evolution attenuator factor is introduced into the genetic algorithm, which enables the new adaptive genetic algorithm to adjust the possibilities of crossover and mutation adaptively according to both the individual fitness and evolution generations. The objective functions in Pareto optimal solution set are analyzed and the scheme corresponding to the maximum value is chosen as the appropriate optimal solution. Through the simulation of an IEEE 30-bus system, a reasonable scheme for the placement of power quality monitors is obtained; meanwhile the feasibility and effectiveness of the proposed method are verified.
机译:这项工作提出了一种解决输电电源系统中电能质量监控器最佳数量和位置的方法。该问题被建模为一个多目标问题,以在数据冗余和经济效率之间进行权衡。建立了多目标最优放置模型,其中以监视位置和监视器数量为对象。自适应遗传算法用于解决最优模型问题。进化衰减因子被引入到遗传算法中,它使新的自适应遗传算法能够根据个体适应度和进化世代自适应地调整交叉和变异的可能性。分析了帕累托最优解集中的目标函数,并选择了对应于最大值的方案作为合适的最优解。通过对IEEE 30总线系统的仿真,获得了合理的电能质量监控器布置方案;同时验证了该方法的可行性和有效性。

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