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Dynamic symmetrical components analysis and compensation for unbalanced distribution systems

机译:不对称配电系统的动态对称成分分析与补偿

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摘要

The short circuit fault and the unbalanced three-phase loads are the common reasons causing unbalanced voltage distortion (UVD) in the distribution system. In the past, the decline in electric motor performance and life cycle was a well-known fact caused by UVD. However, the UVD deserves more attention in recent years due to the rapid growth of the wind power penetration in the distribution system. The wind power system operated under the UVD suffers not only the pulsation torque but also penetrates unbalanced current and consequently deteriorates the UVD of the distribution system. This paper presents an approach to dynamically resolve the symmetrical components from the three-phase instantaneous voltages in order to clarify the degree of the UVD for compensation. The vector representation for the symmetrical components involves the information of angular frequency into the steady-state phasor, which can push much of the complexity down on the controller design for compensating the UVD. A dynamic voltage restorer (DVR) is employed as a voltage compensator in the series path of the feeder for refining the percent voltage unbalance of the UVD. The impact of the UVD reduction on a grid-tied 3-kW squirrel cage induction generator (SCIG) shows the effectiveness of the proposed approach.
机译:短路故障和三相负载不平衡是导致配电系统电压不平衡(UVD)的常见原因。过去,电动机性能和寿命周期的下降是由UVD引起的众所周知的事实。但是,由于风力发电在配电系统中的快速增长,近年来UVD值得更多关注。在UVD下运行的风力发电系统不仅承受脉动转矩,而且会穿透不平衡的电流,因此会使配电系统的UVD恶化。本文提出了一种从三相瞬时电压动态解析对称分量的方法,以阐明用于补偿的UVD程度。对称分量的矢量表示将角频率信息输入到稳态相量中,这可以将用于补偿UVD的控制器设计的复杂性降低很多。动态电压恢复器(DVR)在馈线的串联路径中用作电压补偿器,用于完善UVD的百分比电压不平衡。 UVD减少对并网的3 kW鼠笼式感应发电机(SCIG)的影响表明了该方法的有效性。

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