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An accurate fault location method of smart distribution network

机译:智能配电网故障的精确定位方法

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In order to deal with the global energy crisis and environmental problems, development direction of electric power industry in the new century has become a hot issue of global concern. The smart power grid concept has come into being as the times requires. Smart distribution power grid is an important part of the smart power grid, its core objective is to realize the self-healing distribution power grid. Smart distribution power grid self-healing control technology is one of the smart distribution power grid related problems, which are urgent and need to be focused on. The after fault self-healing control technique is an important content of research on control technology of the smart distribution grid self-healing. By intelligent means, after fault self-healing control technology can realize fault diagnosis, fault location, fault isolation and blackout areas fast restoration of power supply, with no or only a small amount of manual intervention, to achieve fast response, fast processing of distribution power grid fault and fast recovery. Based on the optimization of the network reconfiguration, as much as possible fault without losing load, or as little as possible loss of load, in order to achieve fast processing fault, reduce the fault processing time, reduce load power cut area, increase the reliability of the distribution power supply. One method of distribution power grid fault diagnosis and location uses fault detection signal uploaded by FTU installed on feeder column switch and DTU installed in power distribution room, and combines with distribution power grid state when fault occurred. Another method uses fault detection signal uploaded by fault indicator installed on switch and combines with distribution power grid state when fault occurred. An accurate fault location method is proposed in this paper, which uses the fault signal sent by FTU, DTU and fault indicator installed on switch, and combines with distribution power grid state when fault occurred. - he method in this paper, defines a unified network topology model of the FTU, DTU or fault indicator installed on the switch and the fault indicator installed in feeder segment. Based uploaded fault signals and topology information when distribution power grid fault, it can do fault diagnosis and precise fault location, and can get accurate fault position between the tower which the fault indicator is installed on. An accurate fault location method proposed in this paper is suitable for overhead lines, cable lines and overhead cable mixed lines and other wirings, suitable for FTU, DTU and fault indicator mixed installation situation, adapts to the actual situation of Chinese distribution power grid, has the characteristics of strong adaptability and easy to use.
机译:为了应对全球能源危机和环境问题,新世纪电力工业的发展方向已成为全球关注的热点问题。智能电网的概念应运而生。智能配电网是智能电网的重要组成部分,其核心目标是实现配电网的自愈。智能配电网的自愈控制技术是智能配电网的相关问题之一,迫在眉睫,需要重点关注。故障后自愈控制技术是智能配电网自愈控制技术研究的重要内容。通过智能手段,故障后的自愈控制技术可以实现故障诊断,故障定位,故障隔离和停电区域的快速恢复,无需或只需少量的人工干预,即可实现快速响应,快速处理配电电网故障,恢复快。在优化网络重配置的基础上,尽可能多的故障而不丢失负载,或尽可能少的负载丢失,以实现快速处理故障,减少故障处理时间,减少负载停电面积,提高可靠性配电电源。配电网故障诊断和定位的一种方法是,将故障检测信号由安装在馈电柱开关上的FTU和配电室中安装的DTU上传,并在发生故障时与配电网状态结合起来。另一种方法是使用安装在交换机上的故障指示器上传的故障检测信号,并在发生故障时与配电网状态结合。本文提出了一种精确的故障定位方法,该方法利用FTU,DTU和安装在交换机上的故障指示器发送的故障信号,并结合发生故障时的配电网状态。 -本文中的方法定义了安装在交换机上的FTU,DTU或故障指示器以及安装在馈线网段的故障指示器的统一网络拓扑模型。根据配电网故障时上传的故障信号和拓扑信息,可以进行故障诊断和精确的故障定位,并可以得到安装了故障指示器的铁塔之间的准确故障位置。本文提出的一种精确的故障定位方法适用于架空线,电缆线和架空电缆混合线等布线,适用于FTU,DTU和故障指示器混合安装的情况,适应中国配电网的实际情况,具有适应性强,使用方便的特点。

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