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Coordinated Control Based on Bus-Signaling and Virtual Inertia for Islanded DC Microgrids

机译:基于总线信号和虚拟惯性的孤岛直流微电网协调控制

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摘要

A low-voltage DC islanded microgrid contains a number of renewable energy sources (RES), local loads, and energy storage systems (ESS). To avoid the over-charging and over-discharging situations of ESS, a coordinated control strategy should be used in DC islanded microgrids. In this paper, a novel bus-signaling method (BSM) is proposed to achieve autonomous coordinated performance of system according to different state of charge (SoC) conditions. Additionally, a secondary coordinated control is introduced to restore the voltage deviation produced by primary control level without decaying coordinated performance. The proposed control algorithm and controller implementation based on BSM are also presented. Finally, real-time simulation results show the feasibility of the proposed approach by presenting the operation of a DC islanded microgrid in different testing scenarios.
机译:低压直流孤岛微电网包含许多可再生能源(RES),本地负载和储能系统(ESS)。为了避免ESS的过度充电和过度放电情况,应在DC孤岛微电网中使用协调控制策略。本文提出了一种新颖的总线信令方法(BSM),以根据不同的荷电状态(SoC)条件实现系统的自主协调性能。此外,还引入了次级协调控制,以恢复初级控制水平所产生的电压偏差,而不会降低协调性能。提出了基于BSM的控制算法和控制器实现。最后,实时仿真结果通过介绍不同测试场景中的直流孤岛微电网的运行情况,证明了该方法的可行性。

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