首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part O. Journal of Risk and Reliability >Reliability and maintainability allocation to minimize total cost of ownership in a series-parallel system
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Reliability and maintainability allocation to minimize total cost of ownership in a series-parallel system

机译:可靠性和可维护性分配,以最大程度地减少串联并联系统中的总拥有成本

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摘要

Allocation of system level requirements is most effective when performed early in the system's design phase. This holds especially true for two critical and fundamental design characteristics: reliability and maintainability. Traditional reliability allocation models are developed to either maximize system reliability under a cost constraint or minimize cost subject to a system-level, target reliability constraint. Cost, in these traditional allocation models, is represented solely by unit cost. Unit cost, by itself, is an inadequate measure of a system's operational effectiveness. In fact, the underlying economic metric used to properly describe the operational effectiveness of a system is total cost of ownership (TCO). TCO includes not only the upstream unit cost but the downstream operations, maintenance, and support costs. In this paper, new allocation models are developed based on TCO that simultaneously allocate both reliability and maintainability for a series-parallel system subject to meeting a system-level availability target. A non-linear representation of a mathematical model is defined that simultaneously allocates both system-level reliability and maintainability targets in a manner that minimizes TCO. This non-linear model is then transformed into a surrogate linear model that can be solved using existing commercial software. Examples are then discussed to illustrate the solution procedure and to show the sensitivity of allocation design decisions to fluctuations in economic factors such as discount rates, and design factors such as the life of the system.
机译:在系统设计阶段的早期执行时,系统级别需求的分配最有效。对于两个关键且基本的设计特征尤其如此:可靠性和可维护性。开发了传统的可靠性分配模型,以在成本约束下最大化系统可靠性或在系统级目标可靠性约束下最小化成本。在这些传统的分配模型中,成本仅由单位成本表示。单价成本本身不足以衡量系统的运行效率。实际上,用来正确描述系统运行有效性的基本经济指标是总拥有成本(TCO)。 TCO不仅包括上游单位成本,还包括下游运营,维护和支持成本。本文基于TCO开发了新的分配模型,该模型同时为满足系统级可用性目标的串并联系统分配可靠性和可维护性。定义了数学模型的非线性表示,该表示以最小化TCO的方式同时分配了系统级可靠性和可维护性目标。然后将此非线性模型转换为可使用现有商业软件求解的替代线性模型。然后讨论示例以说明解决程序,并说明分配设计决策对经济因素(例如折现率)和设计因素(例如系统的寿命)波动的敏感性。

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