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1.
舰船主动力装置系统可靠性的模糊分配 总被引:2,自引:1,他引:2
利用模糊数学理论中的综合评判方法 ,综合考虑多方面的模糊因素 ,对舰船主动力装置系统进行可靠性分配 .这种方法概念清楚、思路清晰 ,为舰船主动力装置初步设计阶段系统可靠性分配的较好方法 相似文献
2.
付立柱 《中国人民武装警察部队学院学报》2009,25(9):75-77
近年来,随着国家和地方政府对部队经费投入的不断增长,部队国有资产在数量、质量以及结构上都有了很大的改善。如何建立健全部队国有资产的管理制度,保证部队国有资产的安全完整和有效使用,防止国有资产流失,是当前部队资产管理和使用人员必须思考的现实问题。 相似文献
3.
高等教育资源的合理配置是提高高校办学质量和效益的前提和关键。本文通过梳理新疆高等教育资源配置现状及存在的具体问题,进一步提出优化高等教育资源配置的对策建议,以期充分发挥高等教育在新疆社会发展中的巨大作用。 相似文献
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We consider a short‐term capacity allocation problem with tool and setup constraints that arises in the context of operational planning in a semiconductor wafer fabrication facility. The problem is that of allocating the available capacity of parallel nonidentical machines to available work‐in‐process (WIP) inventory of operations. Each machine can process a subset of the operations and a tool setup is required on a machine to change processing from one operation to another. Both the number of tools available for an operation and the number of setups that can be performed on a machine during a specified time horizon are limited. We formulate this problem as a degree‐constrained network flow problem on a bipartite graph, show that the problem is NP‐hard, and propose constant factor approximation algorithms. We also develop constructive heuristics and a greedy randomized adaptive search procedure for the problem. Our computational experiments demonstrate that our solution procedures solve the problem efficiently, rendering the use of our algorithms in real environment feasible. © 2005 Wiley Periodicals, Inc. Naval Research Logistics, 2005 相似文献
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An area defense consists of several groups that act independently, i.e., do not communicate with each other. Each group has a fixed number of defenders and a controller that allocates these defenders optimally against the individual attackers comprising an attack. We analyze the effectiveness of this partially coordinated defense against a simultaneous attack of known size in which all attackers are considered to be equally lethal. © 2004 Wiley Periodicals, Inc. Naval Research Logistics, 2005. 相似文献
8.
Allocation of scarce common components to finished product orders is central to the performance of assembly systems. Analysis of these systems is complex, however, when the product master schedule is subject to uncertainty. In this paper, we analyze the cost—service performance of a component inventory system with correlated finished product demands, where component allocation is based on a fair shares method. Such issuing policies are used commonly in practice. We quantify the impact of component stocking policies on finished product delays due to component shortages and on product order completion rates. These results are used to determine optimal base stock levels for components, subject to constraints on finished product service (order completion rates). Our methodology can help managers of assembly systems to (1) understand the impact of their inventory management decisions on customer service, (2) achieve cost reductions by optimizing their inventory investments, and (3) evaluate supplier performance and negotiate contracts by quantifying the effect of delivery lead times on costs and customer service. © 2001 John Wiley & Sons, Inc. Naval Research Logistics 48:409–429, 2001 相似文献
9.
反舰导弹机动与导引配合的弹道设计研究 总被引:2,自引:0,他引:2
传统反舰导弹的末端机动与导引是分别进行的,这使得突防效果的提升受限。为了达到提高突防概率和实现高精度导引的双重目的,需要在导弹的末段实现机动与导引协同配合的设计。利用弹目之间的几何关系,规划设计了根据弹目实时连线进行自适应蛇行机动的程序参考信号。整个设计可以看作比例导引法与蛇行机动的复合,利用的信号包括实测的雷达方位角信号、弹目距离与预先设计好的时间指令。 相似文献
10.
A. Garnaev 《海军后勤学研究》2007,54(1):109-114
This paper deals with a two searchers game and it investigates the problem of how the possibility of finding a hidden object simultaneously by players influences their behavior. Namely, we consider the following two‐sided allocation non‐zero‐sum game on an integer interval [1,n]. Two teams (Player 1 and 2) want to find an immobile object (say, a treasure) hidden at one of n points. Each point i ∈ [1,n] is characterized by a detection parameter λi (μi) for Player 1 (Player 2) such that pi(1 ? exp(?λixi)) (pi(1 ? exp(?μiyi))) is the probability that Player 1 (Player 2) discovers the hidden object with amount of search effort xi (yi) applied at point i where pi ∈ (0,1) is the probability that the object is hidden at point i. Player 1 (Player 2) undertakes the search by allocating the total amount of effort X(Y). The payoff for Player 1 (Player 2) is 1 if he detects the object but his opponent does not. If both players detect the object they can share it proportionally and even can pay some share to an umpire who takes care that the players do not cheat each other, namely Player 1 gets q1 and Player 2 gets q2 where q1 + q2 ≤ 1. The Nash equilibrium of this game is found and numerical examples are given. © 2006 Wiley Periodicals, Inc. Naval Research Logistics, 2007 相似文献