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Novel parameter-free fault location algorithm for transmission lines with series compensation

机译:新型带串联补偿的无参数故障测距算法

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In this paper a novel numerical algorithm for locating faults on transmission lines will be presented. The algorithm does not need the line parameters to locate the fault and can locate all fault types, which makes it very different to existing fault location methods. Line parameters are known only approximately and they differ with varying loading and weather conditions, so an algorithm that does not need them will be more accurate, robust and flexible. This will lead to more reliable fault location and faster fault rectification, helping to improve the security and quality of the energy supply. The algorithm requires synchronised data sampling from both ends of the line, this can be achieved using the emerging Synchronized Measurement Technology. As transmission lines become longer to transport energy from remote sources to load centres, series compensation has been found to be an efficient and economical means of increasing transmission line capacity and voltage stability. However, series compensation can have an adverse effect on the line's protection; therefore the aim of this paper is to develop a settings-free fault location algorithm that is unaffected by series compensation. The algorithm was rigorously tested using ATP-EMTP simulations; the results of which are presented in this paper.
机译:在本文中,将提出一种新颖的数值算法来定位传输线上的故障。该算法不需要线路参数来定位故障,并且可以定位所有故障类型,这使其与现有的故障定位方法有很大的不同。线参数仅是大约已知的,并且它们随着负载和天气条件的变化而不同,因此不需要它们的算法将更加准确,健壮和灵活。这将导致更可靠的故障定位和更快的故障排除,从而有助于提高能源供应的安全性和质量。该算法需要从线路的两端进行同步数据采样,这可以使用新兴的同步测量技术来实现。随着传输线越来越长,将能量从远程来源传输到负载中心,已发现串联补偿是提高传输线容量和电压稳定性的有效且经济的手段。但是,串联补偿会对线路的保护产生不利影响。因此,本文的目的是开发不受序列补偿影响的无设置故障定位算法。该算法已使用ATP-EMTP仿真进行了严格测试;其结果在本文中介绍。

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