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Self-consumption and storage as a way to facilitate the integration of renewable energy in low voltage distribution networks

机译:自耗和存储是促进可再生能源整合到低压配电网络中的一种方式

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摘要

Photovoltaic microgeneration (μG) located near the domestic consumers is expected to increase more in the future. Known issues regarding high μG penetration are voltage rise and reverse power flow. The concept of self-consumption and storage is emerging as a way to improve network power supply quality and to facilitate the integration of small renewable energy sources in low voltage networks. This paper intends to give a further contribution by assessing the improvements provided by allowing domestic clients to consume and store the energy they produce. The tool at hand to study the situation is the unbalanced three-phase load flow algorithm, based on the power summation technique, improved with the capability of explicitly compute the neutral voltages. The behaviour of a test radial distribution grid is assessed in different operating conditions, namely winter/summer, μG penetration level and μG operating mode. Voltage profile, active power flow in the service transformer and losses are monitored. The results suggest that self-consumption with storage operating mode is a promising solution. Voltage excursions above normal grid voltage operating limits were not observed, the situation of reverse active power flow does not occur and the power losses are reduced.
机译:位于国内消费者附近的光伏微型发电(μG)有望在未来增加更多。与高μG穿透有关的已知问题是电压上升和反向功率流。自耗和存储的概念正在出现,它是一种改善网络电源质量并促进小型可再生能源在低压网络中集成的方法。本文旨在通过评估允许国内客户消耗和存储他们生产的能源所提供的改进来做出进一步的贡献。研究这种情况的工具是基于功率求和技术的不平衡三相潮流算法,并通过显式计算中性点电压的能力进行了改进。在不同的运行条件下(即冬季/夏季,μG渗透水平和μG运行模式)评估了径向分布网格的行为。监视电压曲线,服务变压器中的有功功率流和损耗。结果表明,使用存储操作模式进行自我消费是一种很有前途的解决方案。没有观察到高于正常电网电压工作极限的电压偏移,没有发生反向有功潮流的情况,并且降低了功率损耗。

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