A Review on Reactive Power Capability of Distributed Solar PV Inverter in Distribution Systems

Q4 Social Sciences
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引用次数: 0

Abstract

Due to the rapid increase in energy demand and associated environmental effects, renewable energy especially solar energy is being prioritized and promoted as the best choice for meeting energy demands and mitigating environmental issues. Solar energy is effectively utilized in the distributed generation (DG). The main component of the solar photovoltaic system used for converting produced DC power into AC power is the solar inverter. The solar inverter can supply both active and reactive power. However, conventional solar inverters are configured for producing only active power. Demand for reactive power is served by grid only. Therefore, the solar inverters can be upgraded to utilize their reactive power capability also. Which will decrease the reactive power requirement from the grid, resulting in the mitigation of various power quality issues. Reactive power compensation by a smart solar inverter does not require much additional cost or system resources. This article reviews various reactive power support and control techniques provided by the solar inverter.
分布式太阳能光伏逆变器在配电系统中的无功能力研究进展
由于能源需求的快速增长和相关的环境影响,可再生能源,特别是太阳能,正被列为满足能源需求和缓解环境问题的最佳选择,并得到推广。太阳能在分布式发电中得到了有效利用。用于将产生的直流电转换为交流电的太阳能光伏系统的主要部件是太阳能逆变器。太阳能逆变器可以提供有功功率和无功功率。然而,传统的太阳能逆变器被配置为仅产生有功功率。无功功率需求仅由电网提供。因此,太阳能逆变器也可以升级以利用其无功功率能力。这将降低电网的无功功率需求,从而缓解各种电能质量问题。智能太阳能逆变器的无功功率补偿不需要太多的额外成本或系统资源。本文综述了太阳能逆变器提供的各种无功功率支持和控制技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
0.60
自引率
0.00%
发文量
196
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