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Modeling and maximizing burn-in effectiveness

机译:建模和最大化老化效果

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摘要

System burn-in can get rid of many residual defects left from component and subsystem burn-in since incompatibility exists not only among components but also among different subsystems and at the system level. Even if system, subsystem, and component burn-in are performed, the system reliability often does not achieve the requirement. In this case, redundancy is a good way to increase system reliability when improving component reliability is expensive. This paper proposes a nonlinear model to: estimate the optimal burn-in times for all levels, and determine the optimal amount of redundancy for each subsystem. For illustration, a bridge system configuration is considered; however, the model can be easily applied to other system configurations. Since there are few studies on system, subsystem, and component incompatibility, reasonable values are assigned for the compatibility factors at each level.
机译:系统老化可以消除组件和子系统老化留下的许多残留缺陷,因为不兼容不仅存在于组件之间,而且还存在于不同子系统之间以及系统级别。即使执行了系统,子系统和组件老化,系统可靠性通常也达不到要求。在这种情况下,当提高组件可靠性很昂贵时,冗余是提高系统可靠性的好方法。本文提出了一个非线性模型来:估计所有级别的最佳老化时间,并确定每个子系统的最佳冗余量。为了说明起见,考虑了桥系统的配置。但是,该模型可以轻松地应用于其他系统配置。由于对系统,子系统和组件不兼容的研究很少,因此在每个级别上为兼容因数分配合理的值。

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