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A Comprehensive Control for Islanded Hybrid AC/DC Microgrid Involving Multi-terminal AC and DC Subgrids

机译:滨海混合AC / DC微电网的综合控制涉及多终端AC和DC子地区

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To realize the power dispatch in hybrid AC/DC microgrid involving multi-terminal AC and DC subgrids (HMG-MADS) and enhance the system inertia, a comprehensive control is proposed in this paper. Based on the principle of virtual synchronous generator (VSG) and virtual DC capacitor (VDC), the interrelationships of the bi-directional AC/DC converter (BAC) and bi-directional DC/DC converter (BDC) are analyzed. Then the demand of the virtual inertia is defined for BAC and BDC to enhance the system inertia while the reasonable power exchange law is determined for them to realize power support among the subgrids. Meanwhile, the AC subgrids voltage/frequency and DC subgrids voltage are well controlled by comprehensive control. With the defined demand of the virtual inertia and reasonable power exchange rule, a new P/V droop principle for BAC and a new P/V droop principle for BDC is established which can realize a proper assignment of subgrids supportive power and improve the system dynamic response. Finally, simulation results are demonstrated to show the effectiveness and feasibility of the comprehensive control algorithm.
机译:为了实现涉及多终端AC和DC子地游(HMG-MODS)的混合动力AC / DC微电网中的电力调度,提高系统惯性,本文提出了全面的控制。基于虚拟同步发电机(VSG)和虚拟DC电容(VDC)的原理,分析了双向AC / DC转换器(BAC)和双向DC / DC转换器(BDC)的相互关系。然后,为BAC和BDC定义了虚拟惯性的需求,以增强系统惯性,同时确定合理的功率交换定律,以实现子地产之间的电力支持。同时,AC子级电压/频率和DC子级电压通过综合控制良好控制。利用虚拟惯性的定义需求和合理的电力交换规则,建立了BAC的新的P / V下垂原理和BDC的新P / V下垂原理,可以实现基底耕作的适当分配支持,提高系统动态回复。最后,证明了仿真结果表明综合控制算法的有效性和可行性。

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