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A Novel Small Signal Model of Multi-Bus Microgrids for Modeling Interaction of Droop Controllers through the Power Network

机译:一种新型小型信号模型的多总线微电网,用于通过电网模拟下垂控制器的交互

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Microgrid (MG) consists of distributed generation (DG) units, which supply MG loads via the power network. Droop-based control system has been proposed for power sharing implementation among DG units in MGs. The droop control performance is based on the power network variables, which makes it easy to implement. As the control system at the primary level, the droop controller plays a major role in secure operation of MGs in terms of stability concern. However, the lack of high band-width communication links, low X/R ratio of grid impedance and fast response power converters make the droop-based MGs exposed to instability. In this work, a suitable small signal model is developed to assess the droop control system performance and stability. In the proposed model, droop controllers' interaction through the transmission network is modeled appropriately. The proposed model reveals unstable regions which have not been discovered by the conventional parallel-based small signal models.
机译:MicroGrid(MG)由分布式发电(DG)单元组成,其通过电力网络供应MG负载。已经提出了基于下垂的控制系统在MGS中的DG单位之间的权力共享实施。下垂控制性能基于电源网络变量,这使得易于实现。作为主级的控制系统,下垂控制器在稳定性问题方面在MGS的安全操作中发挥着重要作用。然而,缺乏高带宽通信链路,电网阻抗和快速响应功率转换器的低X / R比使下垂的MGS暴露于不稳定性。在这项工作中,开发了合适​​的小信号模型来评估下垂控制系统性能和稳定性。在所提出的模型中,通过传输网络的Droop控制器的交互适当地建​​模。所提出的模型揭示了不稳定的区域,该区域尚未被传统的并行的小信号模型发现。

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