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31.
汪文峰 《装甲兵工程学院学报》2010,24(3)
针对通过更换备件完成修复性维修且常年担负战备的新型武器装备修理级别问题,建立基于使用可用度仿真分析的修理级别分析模型。以地空导弹装备为例,重点仿真分析中继级修复比例、送修率和远程支援技术因子3个指标,定量分析表明使用可用度与3个指标的比例关系,从而可根据使用可用度要求确定该系统修复性维修的修理级别。给出了修复性维修的修理级别分析方法和流程,实例验证了该模型的准确性和可行性。 相似文献
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马军庆 《武警工程学院学报》2010,(3):11-13
军队院校学员队应坚持以培养人才为中心,坚持理论与实际、学院教育与部队建设相结合,遵循院校教育规律,坚持“解放思想、勇于创新,需求牵引、强化特色,遵循规律、持续发展,突出重点、整体推进,注重质量、讲求效益”的原则,全面推进创新教育和素质教育;加强科学管理、创新管理、从严管理,切实提高学员综合素质。 相似文献
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与装备维修组织设计相关的几个问题 总被引:1,自引:0,他引:1
论述了建立装备维修组织过程中的主要活动及它们之间的关系。分析了国内外目前在该领域的研究状况。重点讨论了装备维修组织设计中任务环境、资源组成、资源分布、管理结构、维修专业组结构及资源动态决策等六个问题。 相似文献
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We consider the integrated problem of optimally maintaining an imperfect, deteriorating sensor and the safety‐critical system it monitors. The sensor's costless observations of the binary state of the system become less informative over time. A costly full inspection may be conducted to perfectly discern the state of the system, after which the system is replaced if it is in the out‐of‐control state. In addition, a full inspection provides the opportunity to replace the sensor. We formulate the problem of adaptively scheduling full inspections and sensor replacements using a partially observable Markov decision process (POMDP) model. The objective is to minimize the total expected discounted costs associated with system operation, full inspection, system replacement, and sensor replacement. We show that the optimal policy has a threshold structure and demonstrate the value of coordinating system and sensor maintenance via numerical examples. © 2017 Wiley Periodicals, Inc. Naval Research Logistics 64: 399–417, 2017 相似文献
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维修保障是武器装备形成战斗力的关键要素。随着国际形势和美国国内经济、科技等方面的发展变化,美军的维修策略、维修技术以及维修保障信息化等方面也在不断变革。总结了2000年前后至今,美军在维修保障方面的重大变革,对其发展趋势进行了预测,并结合我军装备保障实际,积极探索切实可行的有效对策。 相似文献
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Model parameter estimation and residual life prediction for a partially observable failing system
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We consider a partially observable degrading system subject to condition monitoring and random failure. The system's condition is categorized into one of three states: a healthy state, a warning state, and a failure state. Only the failure state is observable. While the system is operational, vector data that is stochastically related to the system state is obtained through condition monitoring at regular sampling epochs. The state process evolution follows a hidden semi‐Markov model (HSMM) and Erlang distribution is used for modeling the system's sojourn time in each of its operational states. The Expectation‐maximization (EM) algorithm is applied to estimate the state and observation parameters of the HSMM. Explicit formulas for several important quantities for the system residual life estimation such as the conditional reliability function and the mean residual life are derived in terms of the posterior probability that the system is in the warning state. Numerical examples are presented to demonstrate the applicability of the estimation procedure and failure prediction method. A comparison results with hidden Markov modeling are provided to illustrate the effectiveness of the proposed model. © 2015 Wiley Periodicals, Inc. Naval Research Logistics 62: 190–205, 2015 相似文献
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An age‐dependent repair model is proposed. The notion of the “calendar age” of the product and the degree of repair are used to define the virtual age of the product. The virtual failure rate function and the virtual hazard function related to the lifetime of the product are discussed. Under a nonhomogeneous Poisson process scenario the expected warranty costs for repairable products associated with linear pro‐rata, nonrenewing free replacement and renewing free replacement warranties are evaluated. Illustration of the results is given by numerical and graphical examples. © 2004 Wiley Periodicals, Inc. Naval Research Logistics, 2004. 相似文献