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A Control Strategy for a Distributed Generation Unit in Grid-Connected and Autonomous Modes of Operation

机译:并网和自主运行模式下的分布式发电机组控制策略

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This paper presents a new voltage control strategy for an electronically-interfaced distribution generation (DG) unit that utilizes a voltage-sourced converter (VSC) as the interface medium. The control strategy is based on the concept of voltage-controlled VSC (VC-VSC) rather than the conventional current-controlled VSC (CC-VSC). The proposed VC-VSC 1) enables operation of a DG unit in both grid-connected and islanded (autonomous) modes, 2) provides current-limit capability for the VSC during faults, 3) inherently provides an islanding detection method without non-detection zone, 4) provides smooth transition capability between grid-connected and autonomous modes, and 5) can accommodate ride-through capability requirements under a grid-connected mode. This paper also investigates performance of the proposed VC-VSC strategy based on an eigenanalysis in MATLAB, and time-domain simulations in the PSCAD/EMTDC environment.
机译:本文提出了一种新的电压控制策略,用于电子接口配电生成(DG)单元,该单元利用电压源转换器(VSC)作为接口介质。该控制策略基于电压控制VSC(VC-VSC)的概念,而不是传统的电流控制VSC(CC-VSC)。拟议的VC-VSC 1)允许DG单元在并网和孤岛(自主)模式下运行; 2)在故障期间为VSC提供限流能力; 3)固有地提供了一种孤岛检测方法而不会无检测区域4)在并网模式和自治模式之间提供平滑的过渡能力,并且5)可以满足并网模式下的穿越能力要求。本文还基于MATLAB中的特征分析和PSCAD / EMTDC环境中的时域仿真,研究了所提出的VC-VSC策略的性能。

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