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Protection Dynamic Reliability Analysis System Based on 3RF Technique

机译:基于3RF技术的保护动态可靠性分析系统

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摘要

Seeking a protection reliability system about basic data accumulation, reliability assessment, and improvement measures application has attracted attentions, but there are few discussions about its establishment. Based on characteristics of protection reliability, “3RF” technique—relay failure mode effect analysis (RFMEA), relay fault tree analysis (RFTA), relay failure reporting, analysis, and corrective active system (RFRACAS) is proposed, which could be used as a tool for protection reliability data collection, reliability modeling and quantitative analysis, as well as improvement measures formation. In RFMEA, protection failures are classified and an example of functional protection hardware RFMEA is given. In RFTA, a dynamic fault tree (DFT) model and its quantitative analysis based on sequential Monte Carlo (SMC) simulation is proposed to supply a basis for assessing protection reliability, searching weakness, and improving design and operation reliability of repairable redundant digital protection system. An application in a practical protective production is given to demonstrate the effectiveness of the proposed method. A closed-loop RFRACAS of protection system is illustrated. The combination of RFMEA, RFTA, and RFRACAS is analyzed at last.
机译:寻求关于基础数据累积,可靠性评估和改进措施应用的保护可靠性系统引起了人们的关注,但是关于其建立的讨论很少。根据保护可靠性的特点,提出了“ 3RF”技术-继电器故障模式影响分析(RFMEA),继电故障树分析(RFTA),继电故障报告,分析和纠错主动系统(RFRACAS)。保护可靠性数据收集,可靠性建模和定量分析以及改进措施形成的工具。在RFMEA中,对保护失败进行了分类,并给出了功能保护硬件RFMEA的示例。在RFTA中,提出了一种基于顺序蒙特卡洛模拟的动态故障树模型及其定量分析方法,为评估保护可靠性,寻找弱点,提高可修复冗余数字保护系统的设计和运行可靠性提供了依据。 。给出了在实际防护产品中的应用,以证明所提出方法的有效性。示出了保护系统的闭环RFRACAS。最后分析了RFMEA,RFTA和RFRACAS的组合。

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