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A DC grid primary protection algorithm based on current measurements

机译:基于电流测量的直流电网一次保护算法

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This paper proposes a data-based primary fault detection and identification (FDI) algorithm for HVDC grids. The proposed FDI algorithm utilizes only current measurements to identify the protection zone of the DC grid where the DC fault occurs. In contrast to the previously studied data-based methods in literature, the proposed algorithm of this paper uses features obtained from current rather than voltage measurements. The FDI algorithms which are based on voltage measurements also require the measurements obtained from current sensors to distinguish between faults on DC transmission lines and bus terminals. This paper also presents a detailed model of an optical current transducer (OCT) and investigates how the accuracy and speed of the proposed FDI algorithm is impacted by i) measurement noise and ii) sampling frequency. The proposed algorithm is applied to a four-terminal HVDC grid. The current measurements provided to the relays are obtained from elaborately modeled OCTs. Study results show that the proposed algorithm accurately detects faults at DC transmission lines and converter bus terminals and identifies the protection zone where the fault occurs (bus terminal or transmission line). The performance of the FDI algorithm does not degrade in case of various measurement noises, i.e., optical, electronics unit, and quantization. Furthermore, the range of sampling frequency for which the proposed algorithm can be used without losing accuracy is investigated.
机译:本文提出了一种基于数据的高压直流输电网络主故障检测与识别(FDI)算法。所提出的FDI算法仅利用电流测量来识别发生DC故障的DC电网的保护区域。与文献中先前研究的基于数据的方法相比,本文提出的算法使用从电流而非电压测量获得的特征。基于电压测量的FDI算法还需要从电流传感器获得的测量值,以区分直流传输线和总线端子上的故障。本文还介绍了光电流传感器(OCT)的详细模型,并研究了i)测量噪声和ii)采样频率如何影响所提出的FDI算法的准确性和速度。所提出的算法被应用于四端高压直流输电电网。提供给继电器的电流测量值是从精心建模的OCT获得的。研究结果表明,该算法能够准确地检测出直流输电线路和变流器母线端子的故障,并识别出发生故障的保护区域(母线端子或输电线路)。在各种测量噪声(即光学,电子单元和量化)的情况下,FDI算法的性能不会降低。此外,研究了在不损失精度的情况下可以使用提出的算法的采样频率范围。

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