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Reliability analysis of autonomous controllable protection device in power system

机译:电力系统自主可控保护装置的可靠性分析

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With the deepening of the concept of autonomous control in the power system, more and more attention is paid to the stability of the protection device itself. Compared with the primary equipment condition monitoring, the fault of the secondary protection device will be more concealed. This paper analyzes the factors affecting the reliability of protection devices, forms the life cycle prediction method of substation protection devices, and ensures the safe and stable operation of intelligent substation. Analyzed the reliability of the relay protection device related concepts, from the failure mechanism, through the establishment of joint aging failure based on the Arrhenius model and Weibull distribution model, and based on grid relay protection device, the data is using LM method for joint failure rate estimate the parameters of the model, get old equipment failure rate model of concrete, to determine the reliability of the protection device and the effective service life. An example shows that the model proposed in this paper can effectively predict the failure trend and life boundary of the device, and provide a theoretical basis for the daily maintenance of smart substation.
机译:随着电力系统中自主控制概念的深入,越来越多地关注保护装置本身的稳定性。与主要设备条件监测相比,二级保护装置的故障将更加隐藏。本文分析了影响保护装置可靠性的因素,形成变电站保护装置的生命周期预测方法,确保智能变电站的安全稳定运行。分析继电器保护装置相关概念的可靠性,从故障机制,通过基于Arrhenius模型和Weibull分布模型的联合老化失败,基于网格继电器保护装置,数据使用LM方法进行关节故障速率估计模型的参数,获得混凝土的旧设备故障率模型,确定保护装置的可靠性和有效的使用寿命。一个示例,示出了本文提出的模型可以有效地预测设备的失效趋势和生命边界,并为日常维护的智能变电站提供理论依据。

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