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首页> 外文期刊>Fortschritte der Physik >Optimal Design of Redundant Structures by Incorporating Various Costs
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Optimal Design of Redundant Structures by Incorporating Various Costs

机译:通过包含各种成本的冗余结构的最佳设计

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摘要

Redundant systems, which usually consist of a number of same/similar components (or modules), have been used in various critical infrastructures to ensure the system's normal function. Usually, system reliability can be improved with the adoption of additional components or redundancies. Typically, two types are mainly included, i.e., majority voters and standby redundancies (referred to as SPARE gates for simplicity). Nevertheless, with the increment of redundancies, the consumed cost or space requirement also grows. This study considers a tradeoff between cost and reliability in order to pursue the cost-effective optimal design. The relationships between the total cost and corresponding parameters are discussed thoroughly. Besides, in order to determine the cost-effective design at the expense of a unit of cost, a revised evaluation standard is proposed (referred to as R per Cost). In this paper, we perform a cost-effective analysis of majority voters with different implementations; and we also perform the analyses of SPARE gates (here, a warm spare gate and a cold spare gate are mainly focused). For deriving corresponding total cost, algorithms are presented to predict the necessary failure time of components. In this line, cost-effective analyses of several case studies are performed.
机译:冗余系统通常由许多相同/相似的组件(或模块)组成,已用于各种关键基础架构,以确保系统的正常功能。通常,利用其他组件或冗余可以提高系统可靠性。通常,主要包括两种类型,即大多数选民和备用冗余(简化为备用栅栏)。尽管如此,随着冗余的增量,消耗的成本或空间要求也会增长。本研究考虑了成本和可靠性之间的权衡,以追求具有成本效益的最佳设计。彻底讨论了总成本和相应参数之间的关系。此外,为了以成本单位为代价确定经济高效的设计,提出了修订的评估标准(每次成本称为r)。在本文中,我们对多数选民进行了不同实现的成本效益分析;我们还执行备用盖茨的分析(这里,温暖的备用门和冷备门主要集中。为了导出相应的总成本,提出了算法以预测组件的必要故障时间。在这条线中,进行了几种案例研究的成本效益分析。

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