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Stored energy balance for distributed PV-based active generators in an AC microgrid

机译:交流微电网中分布式基于PV的有源发电机的储能平衡

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In this paper, a decentralized strategy based on fuzzy logic is proposed for balancing the state of charge of the energy storage units for distributed PV-based active generators. The proposed method, weights the action of conventional droop control loops for privileging the charge of the energy storage unit with the smallest state of charge or force a faster discharge of the energy storage system with the biggest state of charge. The units are self-controlled by using local variables, hence, the microgrid can operate without relying on communication systems. The proposed strategy is completely expandable and can be applied to a several number of power generators interconnected in a microgrid. Frequency and voltage bus signaling is used in order to coordinate the control operation mode between units. Simulation results in a low-voltage, three-phase, islanded AC microgrid show the feasibility of the proposed method and its applicability even for several active generators.
机译:本文提出了一种基于模糊逻辑的分散策略,用于平衡分布式光伏主动发电机储能单元的荷电状态。所提出的方法加权了传统的下垂控制回路的作用,以使具有最小电荷状态的能量存储单元的电荷特权化,或者迫使具有最大电荷状态的能量存储系统更快地放电。这些单元通过使用局部变量进行自我控制,因此,微电网可以在不依赖通信系统的情况下运行。所提出的策略是完全可扩展的,并且可以应用于在微电网中互连的多个发电机。为了协调单元之间的控制操作模式,使用了频率和电压总线信号。在低压,三相,孤岛式交流微电网中的仿真结果表明,该方法的可行性及其适用性,甚至适用于多个有源发电机。

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