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High Frequency Transient Sparse Measurement-Based Fault Location for Complex DC Distribution Networks

机译:基于高频暂态稀疏测量的复杂直流配电网故障定位

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摘要

Measurement points supporting data high-speed communication in complex dc distribution networks are insufficient, meanwhile, fault characteristics are greatly affected by control strategies of power electronic equipment. These may cause failure of traditional fault location methods when applied to complex dc distribution networks. Thus, this paper proposes a novel dc pole-to-pole short-circuit fault location algorithm for complex dc distribution networks. First, according to the high frequency transient current loops, this paper constructs the high frequency impedance equivalent models of module multilevel converter (MMC) and dc/dc converter, which are not affected by the control strategies and offer stable impedance values during fault process. Then high frequency transient voltages of sparse measurement points are extracted by wavelet transform to form the node high frequency transient voltage equation. Finally, the node high frequency transient current sparse vector is solved to locate fault position by the node high frequency transient voltage equation combined with the Bayesian compressed sensing (BCS) theory. The proposed algorithm has low requirements on the number of measurement points and does not require data to be measured strictly synchronously. It is also not affected by converter's control strategies and transition resistances. A 32-node dc distribution network is built in PSCAD/EMTDC and simulation results verify the accuracy of the proposed location algorithm.
机译:复杂的直流配电网中支持数据高速通信的测量点不足,同时,故障特征受电力电子设备控制策略的影响很大。当将它们应用于复杂的直流配电网络时,可能会导致传统故障定位方法的失败。因此,本文提出了一种用于复杂直流配电网的新型直流极间短路故障定位算法。首先,根据高频瞬态电流环路,构建了模块多电平转换器(MMC)和dc / dc转换器的高频阻抗等效模型,这些模型不受控制策略的影响,并在故障过程中提供稳定的阻抗值。然后通过小波变换提取稀疏测量点的高频暂态电压,形成节点高频暂态电压方程。最后,结合节点高频暂态电压方程,结合贝叶斯压缩传感理论,求解节点高频暂态电流稀疏矢量,确定故障位置。所提出的算法对测量点的数量要求不高,不需要严格同步地测量数据。它也不受转换器的控制策略和过渡电阻的影响。在PSCAD / EMTDC中构建了一个32节点的直流配电网络,仿真结果验证了所提出的定位算法的准确性。

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