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排序方式: 共有59条查询结果,搜索用时 31 毫秒
1.
为了实时监控运输车辆在道路行驶中产生振动的情况,研制了一套过载实时监控系统。本文论述了系统的工作原理和设计特点,详细给出了系统的硬件组成和软件流程圈。该系统用于亚洲一号卫星以及两颗“澳星”的密封容器运输车过载的实时监控,结果表明,系统均达到了预期的设计要求,具有工作稳定可靠,抗干扰能力强等特点。  相似文献   
2.
We study a stochastic inventory model of a firm that periodically orders a product from a make‐to‐order manufacturer. Orders can be shipped by a combination of two freight modes that differ in lead‐times and costs, although orders are not allowed to cross. Placing an order as well as each use of each freight mode has a fixed and a quantity proportional cost. The decision of how to allocate units between the two freight modes utilizes information about demand during the completion of manufacturing. We derive the optimal freight mode allocation policy, and show that the optimal policy for placing orders is not an (s,S) policy in general. We provide tight bounds for the optimal policy that can be calculated by solving single period problems. Our analysis enables insights into the structure of the optimal policy specifying the conditions under which it simplifies to an (s,S) policy. We characterize the best (s,S) policy for our model, and through extensive numerical investigation show that its performance is comparable with the optimal policy in most cases. Our numerical study also sheds light on the benefits of the dual freight model over the single freight models. © 2011 Wiley Periodicals, Inc. Naval Research Logistics, 2011  相似文献   
3.
Fuel optimizers are decision models (software products) that are increasingly recognized as effective fuel management tools by U.S. truckload carriers. Using the latest price data of every truck stop, these models calculate the optimal fueling schedule for each route that indicates: (i) which truck stop(s) to use, and (ii) how much fuel to buy at the chosen truck stop(s) to minimize the refueling cost. In the current form, however, these models minimize only the fuel cost, and ignore or underestimate other costs that are affected by the models' decision variables. On the basis of the interviews with carrier managers, truck drivers, and fuel‐optimizer vendors, this article proposes a comprehensive model of motor‐carrier fuel optimization that considers all of the costs that are affected by the model's decision variables. Simulation results imply that the proposed model not only attains lower vehicle operating costs than the commercial fuel optimizers, but also gives solutions that are more desirable from the drivers' viewpoint. © 2008 Wiley Periodicals, Inc. Naval Research Logistics, 2008  相似文献   
4.
In this paper, we present an optimization model for coordinating inventory and transportation decisions at an outbound distribution warehouse that serves a group of customers located in a given market area. For the practical problems which motivated this paper, the warehouse is operated by a third party logistics provider. However, the models developed here may be applicable in a more general context where outbound distribution is managed by another supply chain member, e.g., a manufacturer. We consider the case where the aggregate demand of the market area is constant and known per period (e.g., per day). Under an immediate delivery policy, an outbound shipment is released each time a demand is realized (e.g., on a daily basis). On the other hand, if these shipments are consolidated over time, then larger (hence more economical) outbound freight quantities can be dispatched. In this case, the physical inventory requirements at the third party warehouse (TPW) are determined by the consolidated freight quantities. Thus, stock replenishment and outbound shipment release policies should be coordinated. By optimizing inventory and freight consolidation decisions simultaneously, we compute the parameters of an integrated inventory/outbound transportation policy. These parameters determine: (i) how often to dispatch a truck so that transportation scale economies are realized and timely delivery requirements are met, and (ii) how often, and in what quantities, the stock should be replenished at the TPW. We prove that the optimal shipment release timing policy is nonstationary, and we present algorithms for computing the policy parameters for both the uncapacitated and finite cargo capacity problems. The model presented in this study is considerably different from the existing inventory/transportation models in the literature. The classical inventory literature assumes that demands should be satisfied as they arrive so that outbound shipment costs are sunk costs, or else these costs are covered by the customer. Hence, the classical literature does not model outbound transportation costs. However, if a freight consolidation policy is in place then the outbound transportation costs can no longer be ignored in optimization. Relying on this observation, this paper models outbound transportation costs, freight consolidation decisions, and cargo capacity constraints explicitly. © 2002 Wiley Periodicals, Inc. Naval Research Logistics 49: 531–556, 2002; Published online in Wiley InterScience (www.interscience.wiley.com). DOI 10.1002/nav.10030  相似文献   
5.
通过分析西气东输二线工程天然气管道输送过程的火灾危险性,从严格按规范要求进行消防设计、关键部位的火灾预防措施、检测及监控措施、消防安全管理等方面提出了消防安全防范对策。  相似文献   
6.
油库高黏油品黏度大、凝固点高,在常温下管输水力损失大,必须加热升温降黏后才能实施管输、收发及灌桶作业.分析了黏油蒸汽加热的不利因素,研究了黏油热边界层减阻输转理论与工艺技术,开拓了热边界层理论与技术的应用领域.研制了基于热边界层减阻理论的黏液输转装置,建立了黏油热边界层减阻工艺水力和热力数学模型,并编制计算程序,通过热...  相似文献   
7.
目前,油库、储运公司改扩建工程较多,不可避免对工艺流程进行调整,依据液体静电产生原理,应用高斯定理和欧姆定律等理论,分析油罐注油过程中油面电位以及时间与管径、流速等各参数之间的关系,针对管径不变流速变化的情况,进行实验分析,在不对管路进行整改,仅对泵进行重新设计优选时,对如何控制罐内电位的安全,提出参考方案,对油库改扩建工程有一定的指导意义。  相似文献   
8.
联合战役油料输送系统模拟模型及优化研究   总被引:1,自引:1,他引:0  
油料输送是联合战役油料保障中的重要环节,其本质是一个受多种随机因素影响的复杂过程。以运筹学的排队论为建模指导思想,将联合战役油料输送视为一个由多个子系统组成的排队系统,在这一系统中有活动实体(油料)在其中流动。对此动态过程进行模拟分析,结合优化技术,定量分析各种输送方案的军事经济效益,为组织计划联合战役油料输送提供有效的决策支持。  相似文献   
9.
ZHANG Xiao 《国防科技》2018,39(1):005-008
党的十九大报告把军民融合发展战略作为七大国家战略之一,明确提出要"更加注重军民融合"。必须将交通领域军民融合视作整个军民融合深度发展的重要突破口,建设军民融合大交通体系。提出以新形势下军事战略方针为统揽,以军民深度融合为途径,聚焦保障军队打赢,大力推进民用交通设施工具贯彻要求;依托国家路网基础,大力推进军地交通运输网络统筹纳入;强化应战应急一体,大力推进各种交通力量建设互补衔接;着眼战略投送能力,大力推进军民交通物流体系有机结合。  相似文献   
10.
Many logistics systems operate in a decentralized way, while most optimization models assume a centralized planner. One example of a decentralized system is in some sea cargo companies: sales agents, who share ship capacity on a network, independently accept cargo from their location and contribute to the revenue of the system. The central headquarters does not directly control the agents' decisions but can influence them through system design and incentives. In this paper, we model the firm's problem to determine the best capacity allocation to the agents such that system revenue is maximized. In the special case of a single‐route, we formulate the problem as a mixed integer program incorporating the optimal agent behavior. For the NP‐hard multiple‐route case, we propose several heuristics for the problem. Computational experiments show that the decentralized system generally performs worse when network capacity is tight and that the heuristics perform reasonably well. We show that the decentralized system may perform arbitrarily worse than the centralized system when the number of locations goes to infinity, although the choice of sales incentive impacts the performance. We develop an upper bound for the decentralized system, where the bound gives insight on the performance of the heuristics in large systems. © 2007 Wiley Periodicals, Inc. Naval Research Logistics, 2007  相似文献   
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