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Experiences With The Weather Parameter Method For The Use In Overhead Line Monitoring Systems

机译:在架空线监控系统中使用天气参数方法的经验

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Overhead lines are essential components of high voltage power systems worldwide. The performance of this network element is important for a save and reliable transmission of electrical energy. The load capability of a line is related basically to the line design itself and takes centre stage of the economic operation whereas the sag behaviour and the technical condition of the conductor and their components are more related to the line and network safety. Based on this situation overhead line monitoring systems are actually under discussion in many committees worldwide. This auxiliary equipment for overhead power lines helps to evaluate the actual transfer capability and/or to increase the system reliability. Therefore, a number of systems using different measuring methods and monitoring techniques are available on the market. More or less all methods are based on physical data and process information to achieve a suitable output to control the line stress. One of these methods is called the Weather Parameter Method, which uses local metrological weather data and system load information to estimate the conductor temperature. In a research project running over years an overhead line monitoring system was set up in cooperation with the Austrian transmission utility APG. After these years of experience a number of information and data based on the principle of the Weather Parameter Method is available and gives the scientific basement for this contribution. Three observation stations are collecting data all over the year; two stations are at a 220 kV overhead line and one station at the open air test field of the IHS in Graz in use. This contribution focuses on the coherences of the different parameters collected for the evaluation of the conductor temperature and it is not the main goal to discuss the improved performance by using a thermal management system, as mentioned in many other papers. By the knowledge of the punch-through of significant parameters in combination with the appearance probability a more accurate scheduling of the utilisation of the line under observation will be possible. A well prepared processing of many significant parameters for an overhead line monitoring system and a scientific approach based on some years of practical experience is presented in this contribution.
机译:架空线是全球高压电源系统的重要组成部分。该网络元素的性能对于节省和可靠地传输电能非常重要。线路的负载能力基本上与线路设计本身有关,并处于经济运行的中心位置,而导体及其组件的下垂性能和技术条件则与线路和网络安全性有关。基于这种情况,全球许多委员会实际上正在讨论架空线监控系统。用于架空电力线的辅助设备有助于评估实际的传输能力和/或提高系统可靠性。因此,市场上有许多使用不同测量方法和监视技术的系统。或多或少的所有方法都是基于物理数据和过程信息来获得合适的输出来控制线应力的。这些方法之一称为“天气参数方法”,它使用本地的气象天气数据和系统负载信息来估计导体温度。在一项历时多年的研究项目中,与奥地利的输电公司APG合作建立了架空线监控系统。在这些年的经验之后,基于天气参数方法原理的大量信息和数据可供使用,并为这一贡献提供了科学依据。三个观测站全年收集数据;使用中的两个站位于220 kV架空线上,一个站位于IHS格拉茨IHS的露天测试场中。正如许多其他论文中提到的那样,这种贡献集中于为评估导体温度而收集的不同参数的一致性,而讨论使用热管理系统来改善性能并不是主要目标。通过对重要参数的穿通以及出现概率的了解,可以更准确地安排观察中的生产线的利用率。此文稿提供了针对架空线监控系统的许多重要参数的充分准备的处理方法,以及基于多年实践经验的科学方法。

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