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A Coordinated Control for Photovoltaic Generators and Energy Storages in Low-Voltage AC/DC Hybrid Microgrids under Islanded Mode

机译:孤岛模式下低压交流/直流混合微电网中光伏发电机与储能的协调控制

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The increasing penetration of renewable generators can be a significant challenge due to the fluctuation of their power generation. Energy storage (ES) units are one solution to improve power supply quality and guarantee system stability. In this paper, a hybrid microgrid is built based on photovoltaic (PV) generator and ES; and coordinated control is proposed and developed to achieve power management in a decentralized manner. This control scheme contains three different droop strategies according to characteristics of PV and ES. First, the modified droop control is proposed for PV, which can take full utilization of renewable energy and avoid regulating output active power frequently. Second, to maintain the direct current (DC) bus voltage stability, a novel droop control incorporating a constant power band is presented for DC-side ES. Third, a cascade droop control is designed for alternating current (AC)-side ES. Thus, the ES lifetime is prolonged. Moreover, interlinking converters (ICs) provide a bridge between AC/DC buses in a hybrid microgrid. The power control of IC is enabled when the AC- or DC-side suffer from active power demand shortage. In particular, if the AC microgrid does not satisfy the reactive power demand, IC then acts as a static synchronous compensator (STATCOM). The effectiveness of the proposed strategies is verified by simulations.
机译:由于其发电量的波动,可再生发电机的日益普及可能是一个重大挑战。储能(ES)单元是提高电源质量并确保系统稳定性的一种解决方案。本文建立了基于光伏发电和ES的混合微电网。提出并开发了协调控制以分散管理电源。该控制方案根据PV和ES的特性包含三种不同的下垂策略。首先,提出了一种针对光伏发电的改进的下垂控制,该控制可以充分利用可再生能源,避免频繁调节输出有功功率。其次,为了保持直流(DC)总线电压的稳定性,提出了一种针对直流侧ES引入了恒定功率带的新型下垂控制。第三,为交流(AC)侧ES设计了级联下降控制。因此,ES寿命延长。此外,互连转换器(IC)在混合微电网中的AC / DC总线之间提供了一座桥梁。当交流或直流侧遭受有功功率需求不足时,将启用IC的功率控制。特别是,如果交流微电网不满足无功功率要求,则IC便充当静态同步补偿器(STATCOM)。仿真结果验证了所提策略的有效性。

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