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Power Sharing Scheme for an Islanded Microgrid Including Renewables and Battery Storage

机译:岛状微电网的电力共享方案,包括可再生能源和电池存储

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摘要

Microgrids provide an effective way to increase renewable energy (RE) penetration level in the power network. The cooperation of renewable microsources, energy storage systems (ESSs) and conventional dispatchable microsources is an important issue in the operation of an islanded microgrid. In this paper, the designed power sharing scheme aims to maximize renewable penetration level by giving RE the priority of power supply. This requires RE to be able to regulate grid voltage rather than only operating under power control mode (PCM) in the conventional way. Droop control strategy is modified to support a microsource operating under both voltage control mode (VCM) and PCM, and switching between both modes automatically. It also enables “peer to peer” and “plug and play” operation of a microgrid. Meanwhile, the characteristics of power sources (photovoltaic and batteries) are considered. DC/DC converter controller is proposed correspondingly with the aim of keeping the system stable. Simulations have been conducted to verify its effectiveness.
机译:微电网提供了一种有效的方法来增加电力网络中的可再生能源(RE)穿透水平。可再生微电源,能量存储系统(ESS)和传统的调度微路的合作是孤岛微电网的运行中的一个重要问题。在本文中,设计的电力共享方案旨在通过提供电源优先级来最大化可再生渗透水平。这需要重新能够以传统方式调节电网电压而不是仅在功率控制模式(PCM)下操作。修改下垂控制策略以支持在电压控制模式(VCM)和PCM下操作的MicroSource,并自动在两种模式之间切换。它还使“对等对等体”和“即插即用”操作进行了微电网的操作。同时,考虑了电源(光伏和电池)的特性。 DC / DC转换器控制器相应地提出了保持系统稳定的目的。已经进行了模拟以验证其有效性。

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