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1.
针对航空发动机修理工厂大修能力难以评估的问题,提出了航空发动机大修能力评估方法。分析了航空发动机大修生产过程;根据航空发动机大修生产工作特点,建立了基于生产职能分解的航空发动机大修能力评估指标体系,构建出基于熵权和灰色聚类的评估指标赋权模型;结合实例验证了方法的正确性和实用性。  相似文献   
2.
本文利用弹后空间一维均相流假设推导了弹道参数λ_ε,λ,λ_ε的理论表达式。同时对三个参数的相关量进行了研究,得出了与ε相关的关系。利用多通道数据解决了λ-ε的变化规律。文中给出一套完整的膛内火药燃烧规律的处理方法,并对实例进行了计算。  相似文献   
3.
智能化和工具化是RDMS的主要设计思想和技术特色,体现在RDMS的基于规则的计算工具、通用文档管理子系统和汉字通用报表工具。本文着重讨论这三部分的设计与实现问题。  相似文献   
4.
通过对外军战场抢修工作研究和法规建设的回顾,分析了战场抢修研究的重要意义,指出了我军战场抢修工作中亟待解决的问题,论述了加强我军战场抢修法规建设的必要性和紧迫性。根据我军战场抢修的长期实践,借鉴外军有益经验提出了我军战场抢修管理法规和技术法规体系的内容和要求。最后还就加强我军战场抢修法规建设应采取的措施提出了建议。  相似文献   
5.
We seek dynamic server assignment policies in finite‐capacity queueing systems with flexible and collaborative servers, which involve an assembly and/or a disassembly operation. The objective is to maximize the steady‐state throughput. We completely characterize the optimal policy for a Markovian system with two servers, two feeder stations, and instantaneous assembly and disassembly operations. This optimal policy allocates one server per station unless one of the stations is blocked, in which case both servers work at the unblocked station. For Markovian systems with three stations and instantaneous assembly and/or disassembly operations, we consider similar policies that move a server away from his/her “primary” station only when that station is blocked or starving. We determine the optimal assignment of each server whose primary station is blocked or starving in systems with three stations and zero buffers, by formulating the problem as a Markov decision process. Using this optimal assignment, we develop heuristic policies for systems with three or more stations and positive buffers, and show by means of a numerical study that these policies provide near‐optimal throughput. Furthermore, our numerical study shows that these policies developed for assembly‐type systems also work well in tandem systems. © 2008 Wiley Periodicals, Inc. Naval Research Logistics, 2008  相似文献   
6.
应用微分方程、回归分析及生长曲线3段估算法,建立批量生产条件下舰船单价变化模型,这一模型可与其他模型综合应用以取得更理想的结果.  相似文献   
7.
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   
8.
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   
9.
This study combines inspection and lot‐sizing decisions. The issue is whether to INSPECT another unit or PRODUCE a new lot. A unit produced is either conforming or defective. Demand need to be satisfied in full, by conforming units only. The production process may switch from a “good” state to a “bad” state, at constant rate. The proportion of conforming units in the good state is higher than in the bad state. The true state is unobservable and can only be inferred from the quality of units inspected. We thus update, after each inspection, the probability that the unit, next candidate for inspection, was produced while the production process was in the good state. That “good‐state‐probability” is the basis for our decision to INSPECT or PRODUCE. We prove that the optimal policy has a simple form: INSPECT only if the good‐state‐probability exceeds a control limit. We provide a methodology to calculate the optimal lot size and the expected costs associated with INSPECT and PRODUCE. Surprisingly, we find that the control limit, as a function of the demand (and other problem parameters) is not necessarily monotone. Also, counter to intuition, it is possible that the optimal action is PRODUCE, after revealing a conforming unit. © 2007 Wiley Periodicals, Inc. Naval Research Logistics, 2007  相似文献   
10.
法制现代化是中国当前重大的社会主题之一,它是一个历史的、发展的过程。公安法治建设必然对国家法制现代化进程产生重大的影响。公安机关的性质、地位和作用决定了公安执法人员必须具有正确的执法思想。而法律至上观念、权利本位观念、分权制衡观念、正当程序观念对公安执法人员正确执法思想的形成有着直接的影响。  相似文献   
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