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We consider several independent decision makers who stock expensive, low‐demand spare parts for their high‐tech machines. They can collaborate by full pooling of their inventories via free transshipments. We examine the stability of such pooling arrangements, and we address the issue of fairly distributing the collective holding and downtime costs over the participants, by applying concepts from cooperative game theory. We consider two settings: one where each party maintains a predetermined stocking level and one where base stock levels are optimized. For the setting with fixed stocking levels, we unravel the possibly conflicting effects of implementing a full pooling arrangement and study these effects separately to establish intuitive conditions for existence of a stable cost allocation. For the setting with optimized stocking levels, we provide a simple proportional rule that accomplishes a population monotonic allocation scheme if downtime costs are symmetric among participants. Although our whole analysis is motivated by spare parts applications, all results are also applicable to other pooled resource systems of which the steady‐state behavior is equivalent to that of an Erlang loss system. © 2012 Wiley Periodicals, Inc. Naval Research Logistics, 2012 相似文献
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舰艇编队协同反导作战,是海上网络中心作战的典型样式.针对舰艇编队网络化协同反导作战装备体系特殊性,提出了“协同制导通道”基本概念和数学表示方法,并对基于协同制导通道分配方法运用于网络化反导作战条件下武器资源分配进行了研究.分析了单舰反导作战“武器目标分配”的局限性,网络化反导作战“弹-目匹配”新需求和“协同制导通道”的选择方法,为确定“协同制导通道”选择的最优化指标,提出选择“协同制导通道”优化算法奠定了基础. 相似文献
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针对现有空战态势评估方法表现形式不够直观、模型简单的问题,提出一种将威力场与遗传神经网络相结合的态势评估方法,并将其应用于信息支援条件下的协同空战态势评估.分别从攻击能力、探测能力、电子干扰能力、生存能力、通信能力、告警能力、协同能力以及决策能力等方面构建威力势模型.利用遗传算法优化BP神经网络,并将其应用于编队作战能力评估.最后利用具体算例进行仿真验证,结果表明该方法是正确可行的.相比于传统态势评估方法,该方法在信息支援条件下的超视距协同空战态势评估中具有全面性、直观性、准确性等优势. 相似文献
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针对协同作战中任务分解的优化问题,构建了任务协同相关度的量化模型。对作战任务中几个基本概念进行定义,从时间、逻辑、功能3个维度对任务间的协同关系进行了形式化描述,在此基础上,建立了任务协同关系的综合度量模型。最后,通过设置任务协同度阈值的方法,对协同紧密的任务进行聚合,实现任务分解的优化。通过仿真实验验证了模型的可行性和有效性。 相似文献