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Decentralized Method for Load Sharing and Power Management in a Hybrid Single/Three-Phase-Islanded Microgrid Consisting of Hybrid Source PV/Battery Units

机译:由混合光伏/电池组成的混合单/三相微电网负荷分配和电源管理的分散方法

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摘要

This paper proposes a new decentralized power management and load sharing method for a photovoltaic based, hybrid single/three-phase islanded microgrid consisting of various PV units, battery units and hybrid PV/battery units. The proposed method is not limited to the systems with separate PV and battery units, and power flow among different phases is performed automatically through three-phase units. The proposed method takes into account the available PV power and battery conditions of the units to share the load among them. To cover all possible conditions of the microgrid, the operation of each unit is divided into five states in single-phase units and seven states in three-phase units and modified active powerfrequency droop functions are used according to operating states. The frequency level is used as trigger for switching between the states. Efficacy of the proposed method in different load, PV generation and battery conditions is validated experimentally in a microgrid lab prototype consisted of one three-phase unit and two single-phase units.
机译:本文提出了一种新的分散电源管理和负载分担方法,用于基于光伏的混合单/三相岛状微电网,该微电网由各种光伏单元,电池单元和混合光伏/电池单元组成。所提出的方法不限于具有分开的PV和电池单元的系统,并且通过三相单元自动执行不同相之间的功率流。所提出的方法考虑了单元的可用PV功率和电池条件,以在其中共享负载。为了覆盖微电网的所有可能条件,每个单元的操作分为单相单元的五个状态和三相单元的七个状态,并根据操作状态使用修改后的有功功率频率下降功能。频率水平用作触发状态之间的切换。在由一个三相单元和两个单相单元组成的微电网实验室原型中,通过实验验证了该方法在不同负载,光伏发电和电池条件下的有效性。

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