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21.
We study a pull‐type, flexible, multi‐product, and multi‐stage production/inventory system with decentralized two‐card kanban control policies. Each stage involves a processor and two buffers with finite target levels. Production stages, arranged in series, can process several product types one at a time. Transportation of semi‐finished parts from one stage to another is performed in fixed lot sizes. The exact analysis is mathematically intractable even for smaller systems. We present a robust approximation algorithm to model two‐card kanban systems with batch transfers under arbitrary complexity. The algorithm uses phase‐type modeling to find effective processing times and busy period analysis to identify delays among product types in resource contention. Our algorithm reduces the effort required for estimating performance measures by a considerable margin and resolves the state–space explosion problem of analytical approaches. Using this analytical tool, we present new findings for a better understanding of some tactical and operational issues. We show that flow of material in small procurement sizes smoothes flow of information within the system, but also necessitates more frequent shipments between stages, raising the risk of late delivery. Balancing the risk of information delays vis‐à‐vis shipment delays is critical for the success of two‐card kanban systems. Although product variety causes time wasted in setup operations, it also facilitates relatively short production cycles enabling processors to switch from one product type to another more rapidly. The latter point is crucial especially in high‐demand environments. Increasing production line size prevents quick response to customer demand, but it may improve system performance if the vendor lead‐time is long or subject to high variation. Finally, variability in transportation and processing times causes the most damage if it arises at stages closer to the customer. © 2007 Wiley Periodicals, Inc. Naval Research Logistics, 2007 相似文献
22.
We study a component inventory planning problem in an assemble‐to‐order environment faced by many contract manufacturers in which both quick delivery and efficient management of component inventory are crucial for the manufacturers to achieve profitability in a highly competitive market. Extending a recent study in a similar problem setting by the same authors, we analyze an optimization model for determining the optimal component stocking decision for a contract manufacturer facing an uncertain future demand, where product price depends on the delivery times. In contrast to our earlier work, this paper considers the situation where the contract manufacturer needs to deliver the full order quantity in one single shipment. This delivery requirement is appropriate for many industries, such as the garment and toy industries, where the economies of scale in transportation is essential. We develop efficient solution procedures for solving this optimization problem. We use our model results to illustrate how the different model parameters affect the optimal solution. We also compare the results under this full‐shipment model with those from our earlier work that allows for multiple partial shipments. © 2007 Wiley Periodicals, Inc. Naval Research Logistics, 2007 相似文献
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We introduce and develop models for a physical goods storage system based on the 15‐puzzle, a classic children's game in which 15 numbered tiles slide within a 4 × 4 grid. The objective of the game is to arrange the tiles in numerical sequence, starting from a random arrangement. For our purposes, the tiles represent totes, pallets, or even containers that must be stored very densely, and the objective is to maneuver items to an input–output point for retrieval or processing. We develop analytical results for storage configurations having a single empty location (as in the game) and experimental results for configurations with multiple empty locations. Designs with many empty locations can be made to form aisles, allowing us to compare puzzle‐based designs with traditional aisle‐based designs found in warehousing systems. © 2007 Wiley Periodicals, Inc. Naval Research Logistics, 2007 相似文献
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两点源诱偏系统是应用有源干扰的方式,利用反辐射导弹(ARM)本身的缺陷来对反辐射导弹的导引头进行干扰,从而达到保护主战雷达目的的一种有源干扰系统。主要从反辐射导弹的基本原理和有源诱偏的概念入手,对两点源诱偏系统进行理论推导、数学建模、布站设想,后引入毁伤概率指标对各种布站方式进行分类、仿真,对每一种仿真结果进行分析、评估,再把各种分析结果加以比较,从中找出最佳的布站方式。最后利用以上的分析结果,得出几点有用的结论。 相似文献
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针对复杂体系动态适应性研究所存在的问题,提出了复杂体系冗余概念和基于冗余的复杂体系动态适应性结构设计思想,讨论了基于冗余的复杂体系动态博弈设计过程及体系结构;在此基础上,根据复杂体系使命目标的执行特点及体系本身的结构特性,详细地阐述了复杂体系中的任务冗余、系统冗余和结构冗余三种冗余类型,并从冗余切换方式、冗余具体内容和冗余表现性质三个方面论述了复杂体系中各种冗余所组成的冗余体系,指出冗余体系是复杂体系适应环境的一种策略,也是复杂体系不断演化的需要和结果,并且能够为复杂体系动态适应性结构的构建及其效能评估和复杂体系的优化及改进等研究提供一定的理论指导。 相似文献
26.
针对公安科研工作的现状及特点,提出了适合公安科技管理部门进行信息化管理的信息系统解决方案。简要分析了系统需求,从系统数据流程、软件结构及功能框架、实现方案、系统安全保密架构几方面设计了系统体系结构,为公安科研工作提供了统一的科研成果信息化管理平台。 相似文献
27.
Subspace dynamic‐simplex linear interpolation search for mixed‐integer black‐box optimization problems 下载免费PDF全文
Honggang Wang 《海军后勤学研究》2017,64(4):305-322
Design and management of complex systems with both integer and continuous decision variables can be guided using mixed‐integer optimization models and analysis. We propose a new mixed‐integer black‐box optimization (MIBO) method, subspace dynamic‐simplex linear interpolation search (SD‐SLIS), for decision making problems in which system performance can only be evaluated with a computer black‐box model. Through a sequence of gradient‐type local searches in subspaces of solution space, SD‐SLIS is particularly efficient for such MIBO problems with scaling issues. We discuss the convergence conditions and properties of SD‐SLIS algorithms for a class of MIBO problems. Under mild conditions, SD‐SLIS is proved to converge to a stationary solution asymptotically. We apply SD‐SLIS to six example problems including two MIBO problems associated with petroleum field development projects. The algorithm performance of SD‐SLIS is compared with that of a state‐of‐the‐art direct‐search method, NOMAD, and that of a full space simplex interpolation search, Full‐SLIS. The numerical results suggest that SD‐SLIS solves the example problems efficiently and outperforms the compared methods for most of the example cases. © 2017 Wiley Periodicals, Inc. Naval Research Logistics 64: 305–322, 2017 相似文献
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在常规军力优势相对衰落、经费预算日益缩紧的背景下,美军为维持其军事霸权,提出了旨在实现兵力全球自由投送的第三次抵消战略(Third Offset Strategy)。通过梳理抵消战略的现实背景、历史沿革和战略目的,我们发现如果把第三次抵消战略简单视作美军的军事技术发展战略甚至军事战略,就会陷入片面而幼稚的认识误区。除了防范潜在的技术诱骗和技术突袭,更应该从大国博弈的战略视角出发,全面审视和应对第三次抵消战略对我国的挑战。美军实现国家利益的需求导向、自我变革的决心勇气和创新能力、科技兴军的先进理念和以军为主的军民融合成功经验值得借鉴。要以我为主参与制定未来战争的"游戏规则",做到"你打你的,我打我的";要深入研究美军作战体系和美国国家战略的薄弱环节,有针对性地"攻其所必救",从而化解重大安全挑战,争得新的战略机遇期。 相似文献
30.
Adam D.M. Svendsen 《Defense & Security Analysis》2015,31(1):58-73
This article aims to encourage the fostering of more systems thinking, and its greater exploitation, within the domain of contemporary intelligence. With particular focus on “micro systems thinking” and with reference to key intelligence processes, such as intelligence analysis, the utility of many systems dynamics within the intelligence context seeks to be further revealed. Through their greater collective harnessing, including up to “System of Systems” (“SoS”) dynamics, and promoting all that they can offer, more sophisticated overarching operational-to-strategic/policy “ends,” notably that of “defence-in-depth,” can be viably further advanced in a sustainable manner into the future. Arguably, a much-needed transformative impact on contemporary intelligence can also be increasingly realised through comprehensively engaging in and with more systems and SoS thinking. Aiding civil protection tasks, crisis management, emergency planners, and civil contingency practitioners likewise gain. 相似文献