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41.
潜艇耐压壳动力学响应和声辐射研究概况与趋势   总被引:10,自引:3,他引:7  
论述了流场中潜艇耐压壳自由振动、受简谐力或力矩作用和受冲击载荷情况下的动力学响应和声辐射研究概况 ,讨论了带有阻尼材料的复合潜艇耐压壳的动力学和声辐射研究情况 ,以及阻尼材料的破坏研究概况 ,并指出了今后的研究方向  相似文献   
42.
红外/雷达传感器协同跟踪算法研究   总被引:8,自引:1,他引:7  
通常情况下 ,主动传感器在检测到目标之前就暴露了携带它的飞行器 ,因此 ,在作战环境下 ,限制主动检测设备的使用是必要的。被动传感器工作时具有隐蔽性 ,在现代军事跟踪系统中起着重要作用。研究了红外 /雷达的协同跟踪 ,以满足跟踪精度和隐蔽性双重要求  相似文献   
43.
红外技术及其在消防领域中的应用   总被引:2,自引:0,他引:2  
介绍红外技术及其在消防领域中的应用,其应用主要包括电气防火检查、火灾探测、火情侦察和灭火救援等方面.  相似文献   
44.
分析了高频雷达射频干扰抑制方案中对目标信号相干积累的影响,在此基础上提出了一种新型的天线方向图综合算法,并进一步将其应用到改进的干扰抑制新方案中。新方案兼顾了射频干扰的抑制和目标信号的相干积累。计算机仿真结果表明新方案较大地改善了高频雷达抑制射频干扰的性能。  相似文献   
45.
In this paper a constraint proposal method is developed for computing Pareto‐optimal solutions in multiparty negotiations over continuous issues. Constraint proposal methods have been previously studied in a case where the decision set is unconstrained. Here we extend the method to situations with a constrained decision set. In the method the computation of the Pareto‐optimal solutions is decentralized so that the DMs do not have to know each others' value functions. During the procedure they have to indicate their optimal solutions on different sets of linear constraints. When the optimal solutions coincide, the common optimum is a candidate for a Pareto‐optimal point. The constraint proposal method can be used to generate either one Pareto‐optimal solution dominating the status quo solution or several Pareto‐optimal solutions. In latter case a distributive negotiation among the efficient points can be carried out afterwards. © 2001 John Wiley & Sons, Inc. Naval Research Logistics 48: 210–225, 2001  相似文献   
46.
后方油库整体生存概率分析计算   总被引:1,自引:1,他引:0  
针对我军后方油库特点,探讨了油库整体生存概率计算的基本思路和方法,分析了各类分项目标生存概率的计算方法,采用层次分析对后方油库各分项目标权值进行了详细分析计算,可为后方油库伪装防护效能评估提供依据。  相似文献   
47.
对近红外光谱法预测汽油中的稀烃、芳烃含量进行了研究,用全交互验证法对36个不同油库、加油站汽油样品中的稀烃、芳烃含量进行了预测。研究结果表明,近红外光谱法预测汽油中的稀烃、芳烃含量方法可靠,预测结果能够满足国家标准对稀烃、芳烃含量分析的误差要求。  相似文献   
48.
Consider a distribution system with a central warehouse and multiple retailers. Customer demand arrives at each of the retailers continuously at a constant rate. The retailers replenish their inventories from the warehouse which in turn orders from an outside supplier with unlimited stock. There are economies of scale in replenishing the inventories at both the warehouse and the retail level. Stockouts at the retailers are backlogged. The system incurs holding and backorder costs. The objective is to minimize the long‐run average total cost in the system. This paper studies the cost effectiveness of (R, Q) policies in the above system. Under an (R, Q) policy, each facility orders a fixed quantity Q from its supplier every time its inventory position reaches a reorder point R. It is shown that (R, Q) policies are at least 76% effective. Numerical examples are provided to further illustrate the cost effectiveness of (R, Q) policies. © 2000 John Wiley & Sons, Inc. Naval Research Logistics 47: 422–439, 2000  相似文献   
49.
In this paper, two different kinds of (N, T)‐policies for an M/M/m queueing system are studied. The system operates only intermittently and is shut down when no customers are present any more. A fixed setup cost of K > 0 is incurred each time the system is reopened. Also, a holding cost of h > 0 per unit time is incurred for each customer present. The two (N, T)‐policies studied for this queueing system with cost structures are as follows: (1) The system is reactivated as soon as N customers are present or the waiting time of the leading customer reaches a predefined time T, and (2) the system is reactivated as soon as N customers are present or the time units after the end of the last busy period reaches a predefined time T. The equations satisfied by the optimal policy (N*, T*) for minimizing the long‐run average cost per unit time in both cases are obtained. Particularly, we obtain the explicit optimal joint policy (N*, T*) and optimal objective value for the case of a single server, the explicit optimal policy N* and optimal objective value for the case of multiple servers when only predefined customers number N is measured, and the explicit optimal policy T* and optimal objective value for the case of multiple servers when only predefined time units T is measured, respectively. These results partly extend (1) the classic N or T policy to a more practical (N, T)‐policy and (2) the conclusions obtained for single server system to a system consisting of m (m ≥ 1) servers. © 2000 John Wiley & Sons, Inc. Naval Research Logistics 47: 240–258, 2000  相似文献   
50.
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