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41.
在综合评判驱逐舰目标毁伤等级并建立目标毁伤树的基础上,构造了舰炮武器系统对驱逐舰目标射击命中毁伤区域的简化模型图,建立了舰炮对驱逐舰目标射击的条件命中概率模型,通过分析弹丸对装甲目标的终点效应,建立了舰炮对驱逐舰目标射击的条件毁伤概率模型.计算结果表明,运用该方法研究舰炮武器系统对驱逐舰目标射击毁伤定律可信性高. 相似文献
42.
遥控引信技术反导应用 总被引:3,自引:0,他引:3
随着中口径舰炮发射率和系统射击精度的提高,以及弹药技术的发展,尤其是高技术引信的应用为提高中口径舰炮武器系统的反导效能提供了一条有效技术途径。针对水面舰艇防御反舰导弹的作战需求,基于中口径舰炮武器系统现有技术状态,提出了应用遥控引信技术提高系统反导效能的技术方案。通过仿真计算和对比分析,阐述了该方案的可行性和有效性,并进一步探讨了系统的相关技术指标和技术实现途径。 相似文献
43.
Donald D. Eisenstein 《海军后勤学研究》2008,55(4):350-362
Order picking accounts for most of the operating expense of a typical distribution center, and thus is often considered the most critical function of a supply chain. In discrete order picking a single worker walks to pick all the items necessary to fulfill a single customer order. Discrete order picking is common not only because of its simplicity and reliability, but also because of its ability to pick orders quickly upon receipt, and thus is commonly used by e‐commerce operations. There are two primary ways to reduce the cost (walking distance required) of the order picking system. First is through the use of technology—conveyor systems and/or the ability to transmit order information to pickers via mobile units. Second is through the design—where best to locate depots (where workers receive pick lists and deposit completed orders) and how best to lay out the product. We build a stochastic model to compare three configurations of different technology requirements: single‐depot, dual‐depot, and no‐depot. For each configuration we explore the optimal design. © 2008 Wiley Periodicals, Inc. Naval Research Logistics, 2008 相似文献
44.
In this article, we introduce the capacitated warehouse location model with risk pooling (CLMRP), which captures the interdependence between capacity issues and the inventory management at the warehouses. The CLMRP models a logistics system in which a single plant ships one type of product to a set of retailers, each with an uncertain demand. Warehouses serve as the direct intermediary between the plant and the retailers for the shipment of the product and also retain safety stock to provide appropriate service levels to the retailers. The CLMRP minimizes the sum of the fixed facility location, transportation, and inventory carrying costs. The model simultaneously determines warehouse locations, shipment sizes from the plant to the warehouses, the working inventory, and safety stock levels at the warehouses and the assignment of retailers to the warehouses. The costs at each warehouse exhibit initially economies of scale and then an exponential increase due to the capacity limitations. We show that this problem can be formulated as a nonlinear integer program in which the objective function is neither concave nor convex. A Lagrangian relaxation solution algorithm is proposed. The Lagrangian subproblem is also a nonlinear integer program. An efficient algorithm is developed for the linear relaxation of this subproblem. The Lagrangian relaxation algorithm provides near‐optimal solutions with reasonable computational requirements for large problem instances. © 2008 Wiley Periodicals, Inc. Naval Research Logistics, 2008 相似文献
45.
针对随机需求条件下的虚拟物流库存控制问题进行了深入研究,提出了一种新的联合库存控制策略——(T,S,s)策略,建立了相应的库存成本模型,并构造遗传算法对模型进行求解。结果分析表明,所提出的(T,S,S)联合库存控制策略是有效的。 相似文献
46.
为探讨反舰导弹非平面机动对舰炮武器系统反导能力的影响,仿真计算了反导舰炮对末端作摆式机动和螺旋机动目标的命中概率,分别给出了不同机动周期、不同机动幅度、不同舰炮射速时的命中概率图线。结果表明,非平面机动无需大幅度机动就能很好抑制反导舰炮的反导能力;且螺旋机动突防效果更好;而舰炮射速对舰炮武器系统的反导能力至关重要。 相似文献
47.
根据新型装备大功率、高性能蒸汽轮机动力装置配套用油需要以及目前海军在用汽轮机油存在的问题,参考美军同类产品标准要求制定了舰船汽轮机油新产品技战术指标。通过基础油、添加剂和配方综合配伍,研制出一种舰船长寿命抗磨汽轮机油,并进行了理化性能试验和台架试验。结果表明:研制的舰船长寿命抗磨汽轮机油具有优异的抗氧化、润滑抗磨、腐蚀抑制及破乳化等性能,且与台架试验各机组间的适应性良好,可以满足用油设备的使用要求。 相似文献
48.
49.
The Replenishment at Sea Planner (RASP) is saving the U.S. Navy millions of dollars a year by reducing fuel consumption of its Combat Logistics Force (CLF). CLF shuttle supply ships deploy from ports to rendezvous with underway U.S. combatants and those of coalition partners. The overwhelming commodity transferred is fuel, ship‐to‐ship by hoses, while other important packaged goods and spare parts are high‐lined, or helicoptered between ships. The U.S. Navy is organized in large areas of responsibility called numbered fleets, and within each of these a scheduler must promulgate a daily forecast of CLF shuttle operations. The operational planning horizon extends out several weeks, or as far into the future as we can forecast demand. We solve RASP with integer linear optimization and a purpose‐built heuristic. RASP plans Replenishment‐at‐Sea (RAS) events with 4‐hour (Navy watch) time fidelity. For five years, RASP has served two purposes: (1) it helps schedulers generate a daily schedule and animates it using Google Earth, and (2) it automates reports command‐to‐ship messages that are essential to keep this complex logistics system operating. 相似文献
50.