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231.
构造迭代算法研究了矩阵方程[AXB,GXH] = [C,D] ,证明了该算法可经有限步得到方程的对称最小二乘解及其最佳逼近,并给出了相关性质.最后,通过数值例子表明该算法是有效的. 相似文献
232.
古代文论是古代知识分子创造思想的集中反映。古代文论关于创作本质特点和创作主体素质的思想揭示了写作的本质在于求新 ,新表现在“前人未道”和“匠心独妙”两个方面 ,对于创造主体的素质 ,要求“才识胆力”四者兼备。 相似文献
233.
基于熵权多目标决策的战时物资运输方案优选研究 总被引:11,自引:0,他引:11
提出了战时物资运输方案优选问题,分析战时运输的影响因素,提出了评估战时物资运输方案的较有代表性的指标,并给出了具体计算方法.在没有指标权重的情况下,应用熵权多目标决策方法对多个合理方案进行优选评估,得出了可信度较高的优选方案. 相似文献
234.
Lot splitting refers to breaking a production lot into smaller sublots during production. Coordinating lot splitting decisions across multiple stages of a production process is a challenging task. Traditional lot splitting and lot streaming models implicitly assume that the entire system is operated and owned by the same firm, or there exists a coordinator who controls the operation of all machines in the system. In this paper, we consider the situation where the machines in a multiple‐stage production process are owned and managed by different companies. Every item in a given production lot has to go through the processing by the supplier's machine, followed by the manufacturer's machine, and so on. We develop and analyze coordination mechanisms that enable different parties in the supply chain to coordinate their lot splitting decisions so as to achieve a systemwide optimum. © 2004 Wiley Periodicals, Inc. Naval Research Logistics, 2004 相似文献
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237.
针对目前保障性分配仅限于单船的问题,借鉴基本可靠度的分配思想,通过对舰艇编队使用可用度与单船使用可用度关系的分析,建立了舰艇编队保障性指标分解模型,并采用多因子评分系数分配法来确定舰艇编队保障性指标的权重。最后,通过实例给出了具体分解操作步骤,证明了该模型的正确性和有效性。分解结果可优化舰艇编队的编成,为编队里同型单船保障性指标的确定提供修正,同时为完善舰艇编队的综合保障工程提供参考。 相似文献
238.
在可靠性加速试验中,由于各种不同的应力引起的失效机理不一样,不同应力之间可能还存在着相互耦合作用,要将它们和寿命结合,找出一个能真实描述客观情况的加速模型是相当困难的,仅仅依据有限的试验数据建立产品的加速模型存在很大难度和风险,为此提出了一种基于RBF网络加速模型的可靠性评估方法.该方法将加速寿命试验中的加速应力和可靠度作为训练网络的输入向量,相应的时间作为目标向量对网络进行训练,根据网络收敛速和误差精度等情况调整隐含层单元个数,直至得到最优的网络.最后,以实例说明了该方法的有效性和实用性. 相似文献
239.
Shaul K. Bar‐Lev Onno Boxma Andreas Löpker Wolfgang Stadje Frank A. Van der Duyn Schouten 《海军后勤学研究》2012,59(1):39-51
We present a group testing model for items characterized by marker random variables. An item is defined to be good (defective) if its marker is below (above) a given threshold. The items can be tested in groups; the goal is to obtain a prespecified number of good items by testing them in optimally sized groups. Besides this group size, the controller has to select a threshold value for the group marker sums, and the target number of groups which by the tests are classified to consist only of good items. These decision variables have to be chosen so as to minimize a cost function, which is a linear combination of the expected number of group tests and an expected penalty for missing the desired number of good items, subject to constraints on the probabilities of misclassifications. We treat two models of this kind: the first one is based on an infinite population size, whereas the second one deals with the case of a finite number of available items. All performance measures are derived in closed form; approximations are also given. Furthermore, we prove monotonicity properties of the components of the objective function and of the constraints. In several examples, we study (i) the dependence of the cost function on the decision variables and (ii) the dependence of the optimal values of the decision variables (group size, group marker threshold, and stopping rule for groups classified as clean) and of the target functionals (optimal expected number of tests, optimal expected penalty, and minimal expected cost) on the system parameters.© 2011 Wiley Periodicals, Inc. Naval Research Logistics, 2011 相似文献
240.
The significance of integrating reliability into logistics performance has been established [The Logistics Performance Index and Its Indicators, World Bank International Trade and Transport Departments, (2010)]. Hence, as a response to the work by the World Bank, the present article aims to evaluate the performance index Rb,d of logistics systems as the probability that a specified demand d can be distributed successfully through multistate arc capacities from the source to the destination under the constraint that the total distribution cost should not exceed the cost limitation b. This article provides a pioneering approach for a straightforward computation of the performance index Rb,d. The proposed algorithm is a hybrid between the polynomial time capacity‐scaling algorithm, which was presented by Edmonds and Karp [JACM 19 (1972)], and the decomposition algorithm, which was presented by Jane and Laih [IEEE (2008)]. Currently, the proposed approach is the only algorithm that can directly compute Rb,d. An illustration of the proposed algorithm is presented. The results of the computational experiments indicate that the presented algorithm outperforms existing algorithms. © 2012 Wiley Periodicals, Inc. Naval Research Logistics, 2012 相似文献