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Fault Current Management Using Inverter-Based Distributed Generators in Smart Grids

机译:在智能电网中使用基于逆变器的分布式发电机进行故障电流管理

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This paper presents a novel fault current management (FCM) technique for radial distribution systems with embedded inverter-based distributed generators (IB-DGs). At the point of connection to a power system, many distributed generators (DGs) require power electronic (PE) interfaces, which are normally idle during faults. The proposed FCM method employs these PE interfaces for control of the fault current. For this purpose, operation of IB-DGs is modified to FCM mode at the moment of fault and new current references are applied. Of the two controllable parameters of the IB-DG output current—current magnitude and current phase angle—the current phase angle is chosen as the means of controlling the fault current magnitude. The reference current phase angle is calculated based on the relation between the fault current elements and their phase angles. As a result of this novel operation, IB-DGs with larger capacity can be connected at different locations of the system without affecting the fault current magnitude. Also, implementing this technique in smart grids is economically proven, since the asset of power system which have been designed for normal operation are employed to manage the fault current magnitude. Moreover, possibilities of synchronization problems are reduced by keeping IB-DGs connected to the system at all the time. The evaluation of the proposed FCM technique using the standard IEEE 33-bus distribution system demonstrates the effectiveness of the proposed method for managing the fault current magnitude.
机译:本文提出了一种基于嵌入式逆变器的分布式发电机(IB-DG)的径向配电系统故障电流管理(FCM)技术。在连接到电力系统时,许多分布式发电机(DG)都需要电力电子(PE)接口,该接口通常在故障期间处于空闲状态。所提出的FCM方法利用这些PE接口来控制故障电流。为此,在出现故障时将IB-DG的操作修改为FCM模式,并应用新的电流参考。在IB-DG输出电流的两个可控制参数(电流幅度和电流相角)中,选择电流相角作为控制故障电流幅度的手段。基于故障电流元件与其相角之间的关系来计算参考电流相角。由于这种新颖的操作,可以在系统的不同位置连接容量更大的IB-DG,而不会影响故障电流的大小。同样,在智能电网中实施该技术在经济上得到了证明,因为采用了为正常运行而设计的电力系统资产来管理故障电流大小。此外,通过始终将IB-DG保持连接到系统来减少同步问题的可能性。使用标准的IEEE 33总线配电系统对所提出的FCM技术进行评估,证明了所提出的方法用于管理故障电流幅度的有效性。

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