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optimized Operation and Control of Microgrid based on Multi-objective Genetic Algorithm

机译:多目标遗传算法的微电网优化运行与控制

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The steady-state performance and power quality of microgrid is closely related to control parameters. this paper develops hierarchical control of microgrid, which consists of power control stage, voltage control stage and current control stage. This control schemes can simultaneously regulate fundamental voltage and harmonic current to improve the power quality of microgrid. In order to enhance steady state control precision, unbalance and harmonics eliminate ability of microgrid, the control parameters of hierarchical control are optimized by multi-objective genetic algorithm. The simulation results show that the optimized control algorithm can effectively optimize the microgrid operation on steady control accuracy and power quality.
机译:微电网的稳态性能和电能质量与控制参数密切相关。本文研究了微电网的分级控制,它由功率控制级,电压控制级和电流控制级组成。该控制方案可以同时调节基本电压和谐波电流,以改善微电网的电能质量。为了提高稳态控制的精度,微电网的失衡和谐波消除能力,采用多目标遗传算法对分级控制的控制参数进行了优化。仿真结果表明,优化的控制算法可以有效地优化微电网的稳定控制精度和电能质量。

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