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A simplified and automated fault current estimation approach for grid-connected low-voltage AC microgrids

机译:并网低压交流微电网的简化自动故障电流估计方法

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For a grid-connected AC microgrid (MG), when a fault occurs at the microgrid, adaptive overcurrent (OC) or directional overcurrent (DOC) relays must be activated as fast as possible to protect all distributed generation (DG) units and loads. Fault currents inside the grid-connected AC microgrid can be significantly varied because fault current contributions from the main grid and DG units are different depending on various fault locations, fault types, and high penetration of inverter-based distributed generators (IBDGs) and rotating-based distributed generators (RBDGs) in the microgrid. A traditional fault analysis method cannot be applicable for AC microgrids with the presence of both rotating-based distributed generators and inverter-based distributed generators. Therefore, this paper proposes a simplified and automated fault current estimation approach for grid-connected AC microgrids, which is effective to quickly and accurately calculate fault current contributions from IBDGs and RBDGs and the grid fault current contribution to any faulted sections in the microgrid. This simplified and automated fault current calculation approach is mainly focused on grid-connected and small-sized low-voltage (LV) AC microgrids with the support of communication system. Under the grid-connected operation mode of the MG, fault tripping current thresholds of adaptive OC/DOC relays can be properly adjusted by the proposed fault analysis method. In particular, relying on fault current distribution coefficients of IBDGs, RBDGs, and the utility grid, pick-up currents of the adaptive OC/DOC relays in the LV AC microgrid are instantly and accurately self-adjusted according to different MG configurations as well as the operation status of DG units during the grid-connected mode.
机译:对于并网交流微电网(MG),当微电网发生故障时,必须尽快激活自适应过电流(OC)或定向过电流(DOC)继电器,以保护所有分布式发电(DG)单元和负载。并网交流微电网内部的故障电流可能会发生很大变化,因为主电网和DG单元的故障电流贡献会根据各种故障位置,故障类型以及基于逆变器的分布式发电机(IBDG)的高穿透性以及旋转式发电机的不同而有所不同。微电网中的基于分布式的发电机(RBDG)。在同时存在基于旋转的分布式发电机和基于逆变器的分布式发电机的情况下,传统的故障分析方法不适用于交流微电网。因此,本文提出了一种简化的自动化的并网交流微电网故障电流估计方法,该方法可有效快速,准确地计算IBDG和RBDG的故障电流贡献,以及电网故障电流对微电网中任何故障区域的贡献。这种简化的自动故障电流计算方法主要集中在通讯系统支持下的并网和小型低压(LV)交流微电网。在MG的并网运行模式下,通过所提出的故障分析方法可以适当地调整自适应OC / DOC继电器的故障跳闸电流阈值。尤其是,依靠IBDG,RBDG和公用电网的故障电流分配系数,可根据不同的MG配置以及不同的MG即时,准确地自动调整LV AC微电网中自适应OC / DOC继电器的启动电流。并网模式下DG单元的运行状态。

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