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Using dynamic sustainment to determine the impact of varying levels of reliability on future combat systems maintenance requirements

机译:使用动态维持来确定不同级别的可靠性对未来战斗系统维护要求的影响

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摘要

The primary purpose of this thesis is to provide analysis for future reliability studies. This thesis assesses the value of the Dynamic Sustainment simulation model as a logistics modeling tool and demonstrates data analysis techniques that can potentially be applied to model results. The secondary purpose is to explore the impact on the maintenance system of varying levels of platform reliability as part of an ongoing effort to provide the Office of the Secretary of Defense with credible analysis for future combat system reliability. The effects of a crew repair team having a high or low repair capability; having a fast or slow spare parts delivery speed; having high, medium, or low system reliability; and high or low numbers of mechanics was measured on maintenance man-hours required at the end of a 72-hour scenario. Twenty-four treatments with varying levels of each factor were designed and imposed on four combat arms brigades. The fourth brigade had 70 percent more vehicles than the other three. Significant effects of all factors except the number of mechanics were found with interaction between those factors. Spare parts delivery speed was ranked high in terms of significance followed by crew repair capability. Slow delivery speed reduced maintenance. Low reliability produced the most maintenance man-hours.
机译:本文的主要目的是为将来的可靠性研究提供分析依据。本文评估了动态可持续性仿真模型作为物流建模工具的价值,并演示了可以潜在地应用于模型结果的数据分析技术。次要目的是探索平台可靠性水平不同对维护系统的影响,这是正在进行的工作的一部分,旨在为国防部长办公室提供有关未来作战系统可靠性的可靠分析。具有高或低修理能力的船员修理队的影响;备件交付速度快或慢;具有高,中或低的系统可靠性;而根据72小时方案结束时所需的维护工时来衡量机械师的数量。设计了二十四种治疗方法,每种治疗方法的水平各不相同,并施加在四个战斗武器旅上。第四个旅的车辆比其他三个旅多70%。除力学数量外,所有因素的显着影响均与这些因素之间的相互作用有关。备件交付速度在重要性上排名很高,其次是机组维修能力。缓慢的传送速度减少了维护。低可靠性导致最多的维修工时。

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    Dozier Pamela C.;

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  • 年度 2006
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