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Genetic algorithm based optimal operation for photovoltaic systems under different fault criteria

机译:基于遗传算法基于不同故障标准下光伏系统的最优运行

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The need to optimize the operation of PV systems is justified by the fact that PV systems are expensive to build, fuel- free source, and it is therefore natural that user of such systems would want them to perform at their most optimal point. Under the faulted condition, the power curve has a multi-peak nature; conventional optimization technique can easily fall down in local optimal and initial point problems. Genetic algorithm as a global optimization technique is adopted to optimize photovoltaic power system under different faulted conditions. The proposed PV system and GA scheme is tested for three different sizes (three module panel five module and seven module panel) of PV system under different faulted conditions and the simulation results sbown in the paper. It is shown from the results that the genetic algorithm captured the exact optimization point accurately for the tested cases.
机译:优化PV系统的操作的需要是由PV系统构建,无源源的昂贵的事实是合理的,因此自然的是这种系统的用户希望它们在最佳点处执行。 在断层状态下,电力曲线具有多峰的性质; 传统的优化技术可以容易地倒下在局部最佳和初始点问题中。 采用遗传算法作为全局优化技术,在不同断层条件下优化光伏电力系统。 在不同故障条件下,在不同故障条件下,PV系统的三种不同尺寸(三个模块面板五模块和七个模块面板)测试了所提出的PV系统和GA方案,纸张中的仿真结果。 从结果显示出遗传算法准确地捕获精确优化点的结果显示了测试的情况。

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