基于遗传算法的并网微电网能量管理与电压调节

Natasha Dimishkovska Krsteski, A. Iliev
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引用次数: 2

摘要

本文提出了一种考虑并网微电网电压调节的遗传算法优化方法。对电压调节的需求来自于分布式发电机的电力消耗和发电的随机性,以及对稳定和高质量电力供应的需求。该算法在一个小型微电网上进行了测试,该微电网由光伏和风力发电机组成,由电池能源系统提供24小时的支持。得到的结果表明,将电压调节作为优化过程的一部分是经济效益的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy Management and Voltage Regulation of Grid-Connected Microgrid Using Genetic Algorithm
This paper proposes a genetic algorithm-based optimization methodology that considers the voltage regulation in a grid-connected microgrid. The need for voltage regulation comes from the stochastic nature of the power consumption and the power generation from the distributed generators, and the need for a stable and quality power supply. The algorithm is tested on a small-scale microgrid with PV and wind generators, supported by a battery energy system over a 24-hour time period. The obtained results show the financial benefit of considering the voltage regulation as part of the optimization process.
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