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Comparative evaluation of solar PV hosting capacity enhancement using Volt-VAr and Volt-Watt control strategies

机译:伏瓦和伏瓦瓦控制策略的太阳能光伏托管能力增强对比评价

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Integration of solar photovoltaic systems to low-voltage distribution networks is witnessing an unprecedented growth in many parts of the world. Although solar photovoltaic generation is of significant benefit from a number of angles, exceedance of hosting capacity levels by such installations in low voltage distribution networks continue to cause significant technical challenges in network operation, especially to the management of network voltage. Modern smart inverters are equipped with Volt-VAr and Volt-Watt control capabilities, which can assist in the management of network voltage levels. This paper provides a detailed analysis of the influence of different connection standards which cover these strategies on solar photovoltaic hosting capacity and their applicability in low-voltage distribution networks. Smart inverters with differing Volt-VAr and Volt-Watt control functions are modelled in the DIgSILENT PowerFactory platform. Influence of different connection standards on solar photovoltaic hosting capacity is analysed to investigate the most beneficial connection approach/es to address the issue of voltage violations. Furthermore, the work presented in this paper provides a greater understanding on the hosting capacity improvement by employing advanced inverter control functions where such improvements are subjected to locational aspects of inverters in low-voltage distribution systems. (c) 2021 Elsevier Ltd. All rights reserved.
机译:太阳能光伏系统将太阳能光伏系统集成到低压配电网上目睹了世界许多地方前所未有的增长。尽管太阳能光伏发电具有从多个角度的显着益处,但是通过这种在低压分配网络中的这种装置的托管能力水平继续在网络操作中造成显着的技术挑战,尤其是对网络电压的管理。现代智能逆变器配备Volt-VAR和Volt-Watt控制能力,可以帮助管理网络电压水平。本文详细分析了不同连接标准的影响,这些标准涵盖了这些对太阳能光伏托管能力的策略及其在低压配电网中的适用性。具有不同电压和电压控制功能的智能逆变器在DigSilent PowerFactory平台中建模。分析了不同连接标准对太阳能光伏托管能力的影响,以研究最有益的连接方法,以解决电压违规问题。此外,本文所呈现的工作提供了通过采用先进的逆变器控制功能来提高托管能力改进,其中这种改进在低压分布系统中的逆变器的位置方面。 (c)2021 elestvier有限公司保留所有权利。

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