首页> 外文期刊>International Journal of Reliability, Quality and Safety Engineering >COLD STANDBY REDUNDANCY ALLOCATION IN A MULTI-LEVEL SERIES SYSTEM BY MEMETIC ALGORITHM
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COLD STANDBY REDUNDANCY ALLOCATION IN A MULTI-LEVEL SERIES SYSTEM BY MEMETIC ALGORITHM

机译:基于算法的多级系统冷备用冗余分配

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摘要

Reliability improvement problems have much importance in various engineering systems. Real-world engineering systems contain multiple levels. So, a redundancy allocation problem (RAP) is an efficient method to improve the reliability. Different from existing approaches that consider either hot or cold standby redundancy for a component, our approach considers a multi-level cold standby redundancy allocation problem (MLCSRAP). In other words, MLCSRAP is considered for the module and component levels, simultaneously. The units are duplicated by cold standby redundant units. An optimization solution methodology based on a customized memetic algorithm (MA) is presented for obtaining the optimal reliability of configuration multi-level series. The optimal multi-level redundancy allocation provides the improved reliability and lower life cycle cost. The proposed multi-level cold standby redundancy is compared with a multi-level active redundancy. Also, we allocate the cold standby redundancy at all levels using hierarchical genetic algorithm and compare two algorithms together. Finally, the numerical example illustrates how the theoretical results obtained in this paper can be applied.
机译:可靠性改进问题在各种工程系统中都非常重要。实际的工程系统包含多个级别。因此,冗余分配问题(RAP)是提高可靠性的有效方法。与考虑为组件提供热备用或冷备用冗余的现有方法不同,我们的方法考虑了多级冷备用冗余分配问题(MLCSRAP)。换句话说,同时考虑模块和组件级别的MLCSRAP。这些单元由冷备用冗余单元复制。提出了一种基于定制模因算法的优化解决方案方法,以获取配置多级序列的最优可靠性。最佳的多级冗余分配可提高可靠性并降低生命周期成本。将提议的多级冷备用冗余与多级主动冗余进行了比较。此外,我们使用分层遗传算法在所有级别分配冷备用冗余,并将两种算法进行比较。最后,数值算例说明了如何将本文获得的理论结果应用。

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