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Wind-solar complementarity and effective use of distribution network capacity

机译:风光互补和有效利用配电网容量

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摘要

Exploiting the diversity between different renewable resources is regarded as a significant tool to managing their grid integration. Hybrid combinations of resources provide the potential to smooth output and so overcome limits on the export of power, but their network wide impact is not well understood. This paper examines whether combinations of renewable distributed generation can make more effective use of distribution network capacity. A multi-period, multi-resource optimal power flow approach is used to optimally configure wind and solar photovoltaic capacity to maximise energy production whilst complying with network physical limits. The effectiveness of hybrid distributed generation and the optimization method was examined through comparison with cases using single types of renewable distributed generation. This study demonstrates that by capturing the complementarity between renewables through hybrid design, the network can host more renewable generation capacity and increase total energy export. In addition, smart grid techniques, such as active network management, further boosts the value of resource diversity by allowing connection of more generation capacity of all considered renewables through isolating the infrequent co-occurrence of high outputs during periods of low electricity demand.
机译:开发不同可再生资源之间的多样性被视为管理其电网整合的重要工具。资源的混合组合提供了平滑输出的潜力,因此可以克服对电力输出的限制,但是人们对其网络范围的影响还知之甚少。本文研究可再生分布式发电的组合是否可以更有效地利用配电网络容量。多周期,多资源的最佳潮流方法用于优化配置风能和太阳能光伏发电能力,以在满足网络物理限制的同时最大化能源生产。通过与使用单一类型可再生分布式发电的案例进行比较,检验了混合分布式发电的有效性和优化方法。这项研究表明,通过混合设计捕获可再生能源之间的互补性,该网络可以承载更多可再生能源发电能力并增加总能源出口。另外,诸如主动网络管理之类的智能电网技术通过隔离低电力需求期间不经常出现的高输出并发连接,允许所有考虑的可再生能源的更多发电容量连接,从而进一步提高了资源多样性的价值。

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