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Autonomous Active Power Control for Islanded AC Microgrids with Photovoltaic Generation and Energy Storage System

机译:具有光伏发电和储能系统的孤岛交流微电网的自主有功功率控制

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摘要

In an islanded AC microgrid with distributed energy storage system (ESS), photovoltaic (PV) generation and loads, a coordinated active power regulation is required to ensure efficient utilization of renewable energy, while keeping the ESS from overcharge and over discharge conditions. In this paper, an autonomous active power control strategy is proposed for AC islanded microgrids in order to achieve power management in a decentralized manner. The proposed control algorithm is based on frequency bus-signaling of ESS and uses only local measurements for power distribution among microgrid elements. Moreover, this paper also presents a hierarchical control structure for AC microgrids that is able to integrate the ESS, PV systems and loads. Hereby, basic power management function is realized locally in primary level, while strict frequency regulation can be achieved by using additional secondary controller. Finally, real-time simulation results under various SoC and irradiance conditions are presented in order to prove the validity of proposed approach.
机译:在具有分布式能量存储系统(ESS),光伏(PV)产生和负载的孤岛式交流微电网中,需要协调的有功功率调节以确保有效利用可再生能源,同时防止ESS出现过充和过放电​​情况。本文提出了一种针对交流孤岛电网的自主主动功率控制策略,以实现分散管理。所提出的控制算法基于ESS的频率总线信号,并且仅使用局部测量来在微电网元素之间分配功率。此外,本文还提出了一种用于AC微电网的分层控制结构,该结构能够集成ESS,PV系统和负载。因此,基本的电源管理功能是在初级一级本地实现的,而通过使用附加的次级控制器可以实现严格的频率调节。最后,给出了在各种SoC和辐照条件下的实时仿真结果,以证明所提方法的有效性。

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