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Ultra-High-Speed Traveling-Wave-Based Protection Scheme for Medium-Voltage DC Microgrids

机译:中压直流微电网超高速行波保护方案

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Fast detection of dc faults in medium-voltage dc (MVDC) microgrids poses a challenge as such faults can cause severe damage to voltage-sourced converters within few milliseconds. This paper proposes a new traveling-wave (TW)-based method to detect, classify, and locate different dc fault types in MVDC microgrids. Unlike the existing TW-based protection and fault location methods, the proposed technique: 1) utilizes only the first locally measured TW after the inception of a fault and 2) focuses on the waveshape properties and polarity of the TW, rather than its arrival time. Therefore, the proposed method is faster than the existing techniques, and also requires no form of communication. As a result, it can effectively operate as both primary and backup protection. The proposed method is robust against high-resistance faults, and has been tested for fault resistances of up to 200 Omega. The performance of the proposed scheme has been assessed using a +/- 2.5 kV TN-S grounded MVDC microgrid under various conditions. The results verify the scheme's ultra-high-speed, accuracy, sensitivity, selectivity, and independence from system configuration. The concepts discussed in this paper are independent of the voltage level. Thus, the proposed method can be applied to other types of dc grids as well.
机译:快速检测中压直流(MVDC)微电网中的直流故障带来了挑战,因为此类故障会在几毫秒内对电压源转换器造成严重损坏。本文提出了一种新的基于行波(TW)的方法来检测,分类和定位MVDC微电网中的不同dc故障类型。与现有的基于TW的保护和故障定位方法不同,所提出的技术:1)仅在故障产生后才使用第一个本地测量的TW; 2)关注TW的波形特性和极性,而不是其到达时间。因此,所提出的方法比现有技术更快,并且也不需要任何形式的通信。结果,它可以有效地充当主保护和备用保护。所提出的方法对高电阻故障具有鲁棒性,并且已经针对高达200Ω的故障电阻进行了测试。已使用+/- 2.5 kV TN-S接地的MVDC微电网在各种条件下评估了所提议方案的性能。结果证明了该方案的超高速性,准确性,灵敏度,选择性以及与系统配置的独立性。本文讨论的概念与电压电平无关。因此,所提出的方法也可以应用于其他类型的直流电网。

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