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Cooperative Control in a Hybrid DC/AC Microgrid based on Hybrid DC/AC Virtual Generators

机译:基于混合DC / AC虚拟发电机的混合DC / AC微电网的协同控制

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This paper deals with the dynamic control of the DC bus voltage and the AC voltage magnitude and frequency in a hybrid DC/AC Microgrid (MG). In order to allow a high penetration of renewable energies, provide an increased system reliability during islanding and reduce the dependency on the mains, Energy Storage Systems (ESSs) are included in both the DC and AC grids. The MG is composed by a multiport solid-state-based transformation center, with connexion to the mains and a central battery energy storage system (BESS), and a flexible number of AC Nanogrids (NGs) coupled to a Low Voltage DC bus (LVDC) through DC/AC 3-phase Power Electronic Converters (PECs) operated as grid forming, hereinafter referred as Nanogrid Head Converters (NGHCs). The MG control presents two main characteristics: 1) A DC bus regulation scheme is proposed based on DC virtual generators and P/V DC droop that allows to adapt the participation in the power sharing for DC bus regulation and provides with an automatic transition between grid connected and islanding modes; 2) In order to provide a cooperative operation between the different AC NGs, allowing the automatic power sharing between them through the DC bus, a DC/AC virtual generator control scheme, based on the theory of Virtual Synchronous Machines (VSM), is proposed for its implementation in the NGHCs, thus coupling the control of the LVDC and the NGs. The theoretical discussion is supported with simulations.
机译:本文研究了混合直流/交流微电网(MG)中直流母线电压以及交流电压幅值和频率的动态控制。为了允许可再生能源的高度渗透,在孤岛状态下提高系统的可靠性,并减少对电网的依赖性,直流和交流电网均包含储能系统(ESS)。 MG由一个多端口固态转换中心组成,该中心与市电和中央电池储能系统(BESS)连接,并且灵活的多个AC纳米网格(NG)与低压DC总线(LVDC)耦合)通过以网格形式运行的DC / AC三相电力电子转换器(PEC),以下称为纳米网格头转换器(NGHC)。 MG控制具有两个主要特征:1)提出了一种基于DC虚拟发电机和P / V DC下垂的DC总线调节方案,该方案允许适应参与功率共享的DC总线调节,并提供电网之间的自动过渡连接和孤岛模式; 2)为了提供不同AC NG之间的协同操作,允许它们之间通过DC总线自动进行功率共享,提出了基于虚拟同步机(VSM)理论的DC / AC虚拟发电机控制方案。由于其在NGHC中的实施,因此将LVDC和NG的控制耦合在一起。理论讨论得到了仿真的支持。

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