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Reliability asssessment of SIPS based on a Safety Integrity Level and Spurious Trip Level

机译:基于安全完整性等级和虚假跳闸等级的SIPS可靠性评估

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As the number and complexity of System Integrity Protection Schemes (SIPS) in operation increases very rapidly, it must be ensured that their performance meets the reliability requirements of electrical utilities, in terms of dependability and security. A procedure based on Markov Modeling and Fault Tree Analysis is proposed for assessing SIPS reliability. Many operators tend to have SIPS permanently in service; this reduces the probability the arming software or the human operator will fail to arm the SIPS. Whilst this can decrease the probability of dependability-based misoperation, it may increase the probability of security-based misoperation. Therefore, the impact of having SIPS always armed is examined and compared with the impact of arming the schemes only when required. In addition, two reliability indices are introduced for quantifying the level of SIPS reliability: Safety Integrity Level and Spurious Trip Level. The proposed method is illustrated using the South of Lugo “N-2” SIPS, which is part of the South California Edison grid.
机译:随着运行中的系统完整性保护方案(SIPS)的数量和复杂性迅速增加,就可靠性和安全性而言,必须确保其性能满足电力公司的可靠性要求。提出了一种基于马尔可夫建模和故障树分析的评估方法。许多运营商倾向于永久使用SIPS。这降低了布防软件或操作员无法布防SIPS的可能性。尽管这可以减少基于可靠性的误操作的可能性,但可以增加基于安全性的误操作的可能性。因此,将研究使SIPS始终处于预备状态的影响,并将其与仅在需要时才对方案进行预备的影响进行比较。另外,引入了两个可靠性指标来量化SIPS可靠性级别:安全完整性级别和虚假跳闸级别。 Lugo“ N-2” SIPS的南部说明了该方法,该方法是南加州爱迪生电网的一部分。

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