基于微机的高阻抗故障分析数据采集系统

Robert E. Lee, R. H. Osborn
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引用次数: 14

摘要

对高阻抗故障的研究长期以来一直是宾夕法尼亚电力和照明公司(PP&L)的重中之重。比率接地继电器是在PP&L的赞助下与西屋电气公司的先进系统技术和继电器仪器部门共同开发的。作为研究的一部分,我们对6条馈线进行了数字化建模[1],其中一条馈线在模拟计算机上进行了建模[2],并进行了分阶段故障测试[3],以获取数据并观察受控条件下的继电器运行情况。全面开发和分析一种新的继电器技术的适用性需要长期的现场测试。为了确保设备按照设计规范运行,必须对其进行监控。本文对这四种监测方案进行了分析,并讨论了市售家用微机设备在变电站环境中的独特应用,以自动采集、记录电路数据并将其传输到主机微机。它还描述了计算机的配置、编程和数据传输到公司大型计算机。比率接地继电器和传统接地过流继电器分别安装在六个变电站的一个馈线上,以评估其在正常配电系统日常运行中的性能。详细讨论了这一独特的微机应用程序的开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Microcomputer Based Data Acquisition System for High Impedance Fault Analysis
Investigation of High Impedance Faults has long held a high priority at Pennsylvania Power & Light Company (PP& L). The Ratio Ground Relay has been developed in conjunction with Westinghouse Electric Corporation's Advanced Systems Technology and Relay Instrument Divisions under PP&L sponsorship. As part of the research, six feeders were digitally modeled [1], one feeder was modeled on an analog computer [2], and staged fault tests [3] were conducted to gain data and observe relay operations under controlled conditions. Thorough development and analysis of the applicability of a new relaying technique requires long-term field testing. To ensure that the devices are performing according to design specifications, they must be monitored. This paper describes the analysis of four such monitoring schemes and discusses the unique application of commercially available home microcomputer equipment within the substation environment to automatically sample, record and transmit circuit data to a host microcomputer. It also describes the computer configuration, programming, and data transfer to the corporate mainframe computer. The Ratio Ground Relay and a conventional Ground Overcurrent Relay have been installed on one feeder from each of six substations to evaluate their performance during normal distribution system daily operation. The development of this unique microcomputer application is discussed in detail.
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