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Transients during Mode Transition in Microgrids: Performance evaluation for various Droop controllers

机译:MicroGrids中模式转换期间的瞬态:各种下垂控制器的性能评估

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The distributed generators (DGs) operate in current control (CC) for the grid connected mode and droop control (DC) for islanded mode. A large transient is observed when there is an operational shift form grid connected mode to droop control mode and vice-versa. A proper control scheme has to be designed for reducing these transients. Among the variety of droop controllers employed, four commonly used controller configurations include the conventional droop, generalised droop, conventional droop with virtual impedance (VI) based control, and the transient droop. This paper deals with a state machine based mode transition strategy and compares the transient power sharing performances on a two inverter based DG microgrid, under the various combinations of these droop controller structures. The investigation is cvarried out through simulations and the results for various possible combinations and sub-cases involving power import and export from/to the grid are presented.
机译:分布式发电机(DGS)在电流控制(CC)中运行,用于网格连接模式和孤岛模式下的下垂控制(DC)。当存在操作换档形式网格连接模式时,观察到大瞬态以下垂控制模式,反之亦然。必须设计适当的控制方案来减少这些瞬变。在所采用的各种下垂控制器中,四种常用的控制器配置包括传统的下垂,具有基于虚拟阻抗(VI)的控制的传统下垂,以及瞬态下垂。本文处理了基于状态机的模式转换策略,并在这些下垂控制器结构的各种组合下比较了两个基于逆变器的DG微电网上的瞬态功率共享性能。展示了调查,通过模拟,并展示了各种可能的组合和涉及电力进出口/网格的各种可能组合和子病例的结果。

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