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首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Distance-differential protection of transmission lines connected to wind farms
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Distance-differential protection of transmission lines connected to wind farms

机译:与风电场相连的输电线路的距离差保护

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摘要

Distance relays are often used in the protection of the transmission lines connected to the wind farms. The distance relay using the transmission line impedance measurement identifies the type and location of the fault. However any other factors that cause the failure of the measured impedance, makes the relay detect the fault in incorrect location or do not detect the fault at all. One of these factors is the fault resistance which directly increases the measured impedance by the relay. One of the methods to eliminate relay under-reach effect is using of the trip boundaries. Trip boundaries are changing with wind variation and following with output power of the wind farms. Therefore, trip boundaries should continuously change proportional by the wind speed. In this paper, a method is provided based on the combination of distance and differential protection. In this method, using active power calculation in both ends of the transmission line, fault resistance is calculated and its effects are directly deducted from the calculated impedance by the relay. Therefore, variable trip boundaries are not needed anymore. Also in this method, unlike the technique that the trip boundaries are used, the exact location of fault and its distance from the relay also is calculated. Detailed model of a doubly-fed induction generator (DFIG) driven by a wind turbine is used in the modelling. Results of studies show that the presented method eliminates properly the mal-operation of relays under all different fault resistance conditions. (C) 2017 Elsevier Ltd. All rights reserved.
机译:距离继电器通常用于保护连接到风电场的输电线路。距离继电器使用传输线阻抗测量来确定故障的类型和位置。但是,任何其他导致测量阻抗故障的因素都会使继电器在错误的位置检测到故障,或者根本无法检测到故障。这些因素之一是故障电阻,它会直接增加继电器测量的阻抗。消除继电器欠作用的方法之一是使用跳闸边界。行程边界随着风的变化而变化,并且随风电场的输出功率而变化。因此,行程边界应随风速成比例地连续变化。本文提出了一种基于距离和差动保护相结合的方法。在这种方法中,使用传输线两端的有功功率计算,可以计算故障电阻,并通过继电器从计算出的阻抗中直接扣除其影响。因此,不再需要可变的行程边界。同样在该方法中,与使用跳闸边界的技术不同,故障的确切位置及其与继电器的距离也可以计算出来。在建模中使用了由风力涡轮机驱动的双馈感应发电机(DFIG)的详细模型。研究结果表明,所提出的方法可以在所有不同的抗故障条件下正确消除继电器的误动作。 (C)2017 Elsevier Ltd.保留所有权利。

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