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Determination of the optimum routine test and self-checking intervals in protective relaying using a reliability model

机译:使用可靠性模型确定保护性继电器中的最佳常规测试和自检间隔

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摘要

Relaying reliability is generally separated into the two different aspects of dependability and security. The reliability of a protection relay can be improved by carrying out routine maintenance or by including built-in monitoring and self-checking facilities during the design stages. A Markov model is described in this paper which can be used to examine these features. The model also recognizes common-cause failures, temporary and permanent faults and the associated clearing times, operation of back-up protection, and relay mal-trips. Studies have been conducted to illustrate the expected reliability benefits by inclusion of monitoring and self-checking facilities within the relay.
机译:中继可靠性通常分成可靠性和安全性的两个不同方面。通过在设计阶段进行常规维护或包括内置监测和自检设施,可以提高保护继电器的可靠性。本文描述了Markov模型,其可用于检查这些特征。该模型还认识到常用故障,临时和永久性故障以及相关的清算时间,备用保护以及继电器的持续性。已经进行了研究以说明通过包含继电器内的监测和自检设施来说明预期的可靠性益处。

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