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首页> 外文期刊>Journal of Mechanical Science and Technology >A study on reliability centered maintenance planning of a standard electric motor unit subsystem using computational techniques
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A study on reliability centered maintenance planning of a standard electric motor unit subsystem using computational techniques

机译:基于计算技术的标准电动机单元子系统以可靠性为中心的维护计划研究

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摘要

The design and manufacture of urban transportation applications has been necessarily complicated in order to improve its safety. Urban transportation systems have complex structures that consist of various electric, electronic, and mechanical components, and the maintenance costs generally take up approximately 60% of the total operational costs. Therefore, it is essential to establish a maintenance plan that takes into account both safety and cost. In considering safety and cost limitations, this research introduces an advanced reliability centered maintenance (RCM) planning method using computational techniques, and applies the method to a standard electric motor unit (EMU) subsystem. First, this research devises a maintenance cost function that can reflect the current operating conditions, and maintenance characteristics, of components by generating essential cost factors. Second, a reliability growth analysis (RGA) is performed, using the Army Material Systems Analysis Activity (AMSAA) model, to estimate reliability indexes such as failure rate, and mean time between failures (MTBF), of a standard EMU subsystem, and each individual component Third, two optimization processes are performed to ascertain the optimal maintenance reliability of each component in the standard EMU subsystem. Finally, this research presents the maintenance time of each component based on the optimal maintenance reliability provided by optimization processesand reliability indexes provided by the RGA method.
机译:为了提高其安全性,城市交通应用的设计和制造必然很复杂。城市交通系统的结构复杂,由各种电气,电子和机械组件组成,维护成本通常约占总运营成本的60%。因此,建立既要考虑安全又要考虑成本的维护计划至关重要。在考虑安全和成本限制的情况下,本研究介绍了一种使用计算技术的高级可靠性中心维护(RCM)规划方法,并将该方法应用于标准电动机单元(EMU)子系统。首先,本研究设计了一种维护成本函数,该函数可以通过生成必要的成本因素来反映组件的当前运行状况和维护特性。其次,使用陆军材料系统分析活动(AMSAA)模型执行可靠性增长分析(RGA),以估计标准EMU子系统的可靠性指标,例如故障率和平均故障间隔时间(MTBF),单个组件第三,执行两个优化过程以确定标准EMU子系统中每个组件的最佳维护可靠性。最后,本研究根据优化过程提供的最佳维护可靠性和RGA方法提供的可靠性指标,提出了每个组件的维护时间。

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