首页> 外文期刊>Journal of Industrial Engineering International >Developing an economical model for reliability allocation of an electro-optical system by considering reliability improvement difficulty, criticality, and subsystems dependency
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Developing an economical model for reliability allocation of an electro-optical system by considering reliability improvement difficulty, criticality, and subsystems dependency

机译:通过考虑可靠性提高的难度,关键性和子系统依赖性,开发一种经济的模型来分配电光系统的可靠性

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The nature of electro-optical equipment in various industries and the pursuit of the goal of reducing costs demand high reliability on the part of electro-optical systems. In this respect, reliability improvement could be addressed through a reliability allocation problem. Subsystem reliability must be increased such that the requirements as well as defined requisite functions are ensured in accordance with the designers’ opinion. This study is an attempt to develop a multi-objective model by maximizing system reliability and minimizing costs in order to investigate design phase costs as well as production phase costs. To investigate reliability improvement feasibility in the design phase, effective feasibility factors in the system are used and the sigma level index is incorporated in the production phase as the reliability improvement difficulty factor. Thus, subsystem reliability improvement priorities are taken into consideration. Subsystem dependency degree is investigated through the design structure matrix and incorporated into the model’s limitation together with modified criticality. The primary model is converted into a single-objective model through goal programming. This model is implemented on electro-optical systems, and the results are analyzed. In this method, reliability allocation follows two steps. First, based on the allocation weights, a range is determined for the reliability of subsystems. Afterward, improvement is initiated based upon the costs and priorities of subsystem reliability improvement.
机译:在各个行业中,电光设备的性质以及对降低成本的追求都要求电光系统具有高度的可靠性。在这方面,可以通过可靠性分配问题来解决可靠性的提高。必须提高子系统的可靠性,以便根据设计人员的意见确保要求和定义的必需功能。这项研究试图通过最大化系统可靠性和最小化成本来开发多目标模型,以研究设计阶段成本以及生产阶段成本。为了在设计阶段研究可靠性改进的可行性,使用了系统中的有效可行性因子,并在生产阶段将sigma水平指数作为可靠性改进难度因子。因此,考虑了子系统可靠性改进优先级。通过设计结构矩阵调查子系统的依赖程度,并将其与修改的临界度一起纳入模型的限制中。通过目标编程将主要模型转换为单目标模型。该模型在电光系统上实现,并对结果进行了分析。在这种方法中,可靠性分配遵循两个步骤。首先,基于分配权重,确定子系统可靠性的范围。之后,将基于子系统可靠性改进的成本和优先级来启动改进。

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