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Distance protection of multiple-circuit shared tower transmission lines with different voltages – Part II: fault loop impedance

机译:具有不同电压的多回路共享塔式输电线路的距离保护–第二部分:故障回路阻抗

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摘要

Multiple-circuit transmission lines combining different voltage levels in one tower present extra challenges when setting a protection philosophy, as faults between voltage levels are possible. In this study, the fault loop impedance of combined faults is compared with the fault loop impedance of single-phase-to-ground faults and it is demonstrated that they are similar for high short-circuit powers; however, the fault loop impedance of a combined fault may increase substantially as the short-circuit power of the system decreases, a behaviour that is less noticeable for single-phase-to-ground faults. It is also demonstrated that the fault loop impedance of combined faults is more resistive, when compared with equivalent single-phase-to-ground faults. It is concluded that the settings used to protect a line against single-phase-to-ground faults are capable of protecting the line against combined faults, being advised to increase the resistive limit of the protection zone, if the network has lower short-circuit power. It is recommended to assure that the fault can only happen for cases where the faulted phase from the higher voltage level leads the faulted phase from the lower voltage level, if the length of the line at lower voltage level is smaller than of the line at higher voltage level.
机译:设置保护原理时,在一个塔中组合不同电压等级的多回路传输线会带来额外的挑战,因为电压等级之间可能会出现故障。在这项研究中,将组合故障的故障回路阻抗与单相接地故障的故障回路阻抗进行比较,并证明它们在高短路功率下是相似的。但是,随着系统短路功率的降低,组合故障的故障回路阻抗可能会大大增加,这种现象在单相接地故障中不太明显。还证明了,与等效的单相接地故障相比,组合故障的故障回路阻抗更具阻性。得出的结论是,用于保护线路免受单相接地故障影响的设置能够保护线路免受组合故障的影响,如果网络短路程度较低,建议增加保护区的电阻极限功率。建议确保只有在低电压电平的线路长度小于高电压电平的线路长度时,高电压电平的故障相才导致低电压电平的故障相才可能发生故障。电压水平。

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