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首页> 外文期刊>International journal of electrical power and energy systems >Optimal reactive power rescheduling based on EPSDE algorithm to enhance static voltage stability
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Optimal reactive power rescheduling based on EPSDE algorithm to enhance static voltage stability

机译:基于EPSDE算法的无功优化调度,以提高静态电压的稳定性

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This paper presents an efficient and reliable evolutionary-based approach to solve the optimal reactive power dispatch (ORPD) problem. Optimal reactive power dispatch is a mixed integer, nonlinear optimization problem which includes both continuous and discrete control variables. The proposed approach employs Ensemble of Mutation and Crossover Strategies and Parameters in Differential Evolution (EPSDE) algorithm for optimizing a set of reactive power control variables such as generator voltages, tap positions of tap changing transformers and the amount of reactive compensation which maximizes reactive reserve available at generating buses. Voltage dependent reactive power limits have been accounted. Developed algorithm accounts inequality constraints not only in present operating conditions (after reactive power rescheduling) but also for predicted next interval load (with reactive power rescheduling). Proposed methodology has been implemented on IEEE 14-bus and 25-bus test systems. Performance of the methodology has been compared with Selfadaptive Differential Evolution (SaDE), Teaching Learning Based Optimization (TLBO) and Genetic Algorithm (GA) techniques based on statistical inference.
机译:本文提出了一种有效且可靠的基于进化的方法来解决最优无功功率分配(ORPD)问题。最优无功分配是一个混合整数,非线性优化问题,包括连续和离散控制变量。所提出的方法采用了差分进化中的变异和交叉策略与参数的集成(EPSDE)算法,以优化一组无功功率控制变量,例如发电机电压,抽头变换变压器的抽头位置以及无功补偿量,从而最大程度地增加了可用的无功储备。在发电巴士上。已经考虑了电压相关的无功功率限值。所开发的算法不仅考虑了当前操作条件下的不等式约束(在重新安排无功功率之后),而且还考虑了预测的下一个间隔负载(重新安排了无功功率)。提议的方法已在IEEE 14总线和25总线测试系统上实现。该方法的性能已与自适应差分进化(SaDE),基于教学学习的优化(TLBO)和基于统计推断的遗传算法(GA)技术进行了比较。

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