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EFFECTIVE AND EFFICIENT CIRCUIT BREAKER ANALYSIS

机译:有效高效的断路器分析

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Worldwide utilities and industries have seen various technological advancements in circuit breaker (CB) testing and analysing. Yet most of the owners underperform the maintenance activity when it comes to circuit breaker maintenance and many limit themselves to an operating time test or a static contact resistance test using inappropriate test equipment. The reasons cited for this were 'complicated test procedures which involve longer outage time on the feeder', 'lack of availability of the feeder for maintenance' and 'lack of permission to remove the earth rod or earth switch while the breaker was in shutdown condition'. Also the decision making process and pin pointing the fault in a breaker after performing a basic circuit breaker test will often be a challenge. Though the basic tests like timing test on a circuit breaker provides preliminary information about the breaker condition, actual condition of a deteriorating breaker becomes obvious in a well matured state and often revealed only by a catastrophic failure while in service. Different utilities, switch gear manufacturers, researchers and test equipment manufacturers have stressed the importance of various advanced test methodologies to save time and money. Those tests include coil current analysis, dynamic resistance measurement, testing on dual ground conditions, vibration testing, first trip analysis, online testing and so on. These circuit breaker testing technologies often provide critical information of the circuit breaker and make the decision making process simple. Pinpointing the fault in a circuit breaker and attempting the maintenance activity in a very short time will be complicated if the directions guided by the test methodologies or equipments are not clear enough or easy enough. Also one particular method, tool or technology will never provide a complete solution on the circuit breaker analysis. In this paper we would like to present a report on how some of the latest technologies in the testing industry with an integrated approach of different test methods have averted major catastrophes in substations and has made the CB testing and analysing processes simple, safe, effective and efficient.
机译:全球公用事业和工业已经看到在断路器(CB)的测试和分析的各种技术进步。然而,大多数业主弱于维护活动,当谈到断路器维护和许多限制自己的工作时间测试或使用不当测试设备的静态接触电阻测试。的原因列举了这是“其包括上馈线较长停电时间复杂的测试程序”,“缺乏的给料器进行维护的可用性”和“缺少允许排除接地棒或接地开关而断路器在关断状态的”。另外,决策过程和引脚执行基本断路器试验往往会是一个挑战后,指着一个断路器故障。虽然像上的断路器定时测试基本测试提供了有关断路器条件的初步信息,恶化断路器的实际条件在井成熟状态变得明显和在服务期间经常由灾难性故障只显露出来。不同的实用程序,开关设备制造商,研究人员和测试设备制造商都强调各种先进的测试方法的重要性,以节省时间和金钱。这些测试包括线圈电流分析,动态电阻测量,检测在双接地的条件下,振动测试,第一跳闸分析,在线测试等。这些断路器检测技术往往提供断路器的关键信息,使决策过程简单的决定。精确定位在断路器故障并试图如果由所述的测试方法或设备引导的方向不够清晰或容易够在非常短的时间的保持活动将被复杂化。还一个特定的方法,工具或技术绝不会提供在断路器分析的完整解决方案。在本文中,我们想提出关于如何某些测试行业的最新技术与不同的测试方法的综合方法都避免了变电站的重大灾难,并取得了CB测试和分析过程简单,安全,有效的报告,高效的。

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