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An improved differential protection scheme for micro-grid using time-frequency transform

机译:一种改进的时频变换微电网差动保护方案

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This study presents an improved threshold-based differential protection scheme for micro-grids using time-frequency transform. Variational mode decomposition (VMD) in combination with Hilbert transform is used as the time-frequency transform. The improvements like insensitivity to noise and no modal aliasing effect makes VMD better over wavelet transform and empirical mode decomposition for fault studies. This protection scheme is applied to the currents retrieved at the two ends of the feeder to compute the differential energy for the micro-grid protection in grid connected and islanded modes. The proposed scheme is verified on a standard IEC microgrid test system operating in different configurations for various events like shunt faults, high impedance fault, and switching events. In addition, it is also validated using the real-time signals obtained through OPAL-RT as a real-time simulator. Comparative results validate that the proposed scheme performs accurately providing improved results than the state-of-the-art differential protection schemes.
机译:这项研究提出了一种改进的基于阈值的微电网时空变换差分保护方案。结合希尔伯特变换的变分模式分解(VMD)被用作时频变换。对噪声不敏感和没有模态混叠效应的改进使VMD优于小波变换和用于故障研究的经验模式分解。该保护方案适用于在馈线两端获取的电流,以计算并网和孤岛模式下微电网保护的差分能量。该方案在标准IEC微电网测试系统上进行了验证,该系统以不同的配置运行,可应对各种事件,例如并联故障,高阻抗故障和开关事件。此外,它还可以通过OPAL-RT获得的实时信号作为实时模拟器进行验证。比较结果证明,与最新的差动保护方案相比,所提出的方案能够准确地提供改进的结果。

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