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Reliability modeling of protection system based on phase-type distribution

机译:基于相型分布的保护系统可靠性建模

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For a long time, power system reliability studies assume that the state transition functions should follow exponential distribution, but the preventive maintenance interval and repair time are typically non-exponential. Therefore, the assumption is bound to seriously affect the credibility of analysis results. For this reason, this paper proceeds from the fundamental theory of reliability in mathematics, and with relay protection system as an example and taking into account the preventive maintenance, a model for system reliability with multi-outage modes and its analytical solution based on PH distributions are studied and developed. The proposed model and its solution is not only universal, which can analytical solve system reliability indices with state transition functions of arbitrary distributions, but also in strong readability and calculability, which can profoundly reveal the mechanism of system reliability evaluation. With the actual relay protection operation statistical data as the basic data on reliability, by comparing with numerical results based on sequential Monte-Carlo simulation, the proposed reliability model and its analytical solution are fully proved to be of engineering application value in power system reliability evaluation.
机译:长期以来,电力系统可靠性研究假设状态转移函数应遵循指数分布,但是预防性维护间隔和维修时间通常不是指数。因此,该假设势必会严重影响分析结果的可信度。因此,本文从数学可靠性的基本理论出发,以继电保护系统为例,并结合预防性维护,多中断模式的系统可靠性模型及其基于PH分布的解析解。被研究和开发。所提出的模型及其解决方案不仅具有通用性,可以分析具有任意分布状态转移函数的系统可靠性指标,而且具有较强的可读性和可计算性,可以深刻揭示系统可靠性评估的机理。以实际继电保护运行统计数据作为可靠性的基础数据,通过与基于顺序蒙特卡洛模拟的数值结果进行比较,充分证明了所提出的可靠性模型及其解析解在电力系统可靠性评估中具有工程应用价值。 。

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