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首页> 外文期刊>Generation, Transmission & Distribution, IET >Optimum design of hybrid HVDC circuit breakers using a parallel genetic algorithm and a MATLAB-EMTP environment
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Optimum design of hybrid HVDC circuit breakers using a parallel genetic algorithm and a MATLAB-EMTP environment

机译:使用并行遗传算法和MATLAB-EMTP环境的混合HVDC断路器的优化设计

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摘要

The optimum design of power system components is becoming a relevant topic in power system studies. Genetic algorithms (GAs) are considered as a proper approach for optimisation problems in which non-linear elements are involved. Several trends are presently leading GAs to a new level; for instance, its combination with parallel computing can facilitate the solution of problems where individual evaluations of the fitness function require an important computational effort. This study presents a procedure based on a MATLAB-EMTP application and the usage of a multicore environment for the optimum selection of hybrid high-voltage DC (HVDC) circuit breaker parameters; the goal is to obtain a transient response of the hybrid design with voltages, currents and fault clearance times within specified limits.
机译:电力系统组件的优化设计已成为电力系统研究中的一个相关主题。遗传算法(GA)被认为是解决涉及非线性元素的优化问题的适当方法。当前有几种趋势将GA推向新的高度。例如,将其与并行计算相结合可以方便解决以下问题,其中适应度函数的各个评估需要大量的计算工作。这项研究提出了一种基于MATLAB-EMTP应用程序的程序,以及使用多核环境优化混合高压直流(HVDC)断路器参数的方法。目的是获得电压,电流和故障清除时间在规定范围内的混合设计瞬态响应。

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