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兵工学报 ›› 2013, Vol. 34 ›› Issue (9): 1144-1149.doi: 10. 3969/ j. issn. 1000-1093. 2013. 09. 014

• 研究论文 • 上一篇    下一篇

多约束下舰船装备携行备件保障方案优化方法

阮旻智1, 李庆民1, 张光宇2, 姚刚3   

  1. 1. 海军工程大学科研部, 湖北武汉430033; 2. 海军工程大学兵器工程系, 湖北武汉430033; 3. 海军大连舰艇学院军体教研室, 辽宁大连116018
  • 收稿日期:2012-09-02 修回日期:2012-09-02 上线日期:2013-11-11
  • 通讯作者: 阮旻智 E-mail:ruanminzhi830917@ sina. Com
  • 作者简介:阮旻智(1983—),男,讲师,博士。
  • 基金资助:

    总装备部“十二五冶预先研究项目(51304010206、51327020105)

Optimization Method of Carrying Spare Parts Support Project for Warship Equipment under Multi-constraints

RUAN Min-zhi1, LI Qing-min1, ZHANG Guang-yu2, YAO Gang3   

  1. 1. Office of Research & Development, Naval University of Engineering, Wuhan 430033, Hubei, China; 2. Department of Weaponry Engineering, Naval University of Engineering, Wuhan 430033, Hubei, China; 3. Teaching and Research Department of Military Sports, Dalian Naval Academy, Dalian 116018, Liaoning, China
  • Received:2012-09-02 Revised:2012-09-02 Online:2013-11-11
  • Contact: RUAN Min-zhi E-mail:ruanminzhi830917@ sina. Com

摘要:

针对装备携行备件方案的确定需要综合考虑多项约束指标,以出航任务准备阶段的随舰携行备件方案配置规划为研究背景,在备件质量、体积、费用以及装备可用度4 项指标约束下,建立携行备件方案的配置优化模型。通过引入拉格朗日约束因子将各项指标转化为资源规模约束,采用边际算法对模型进行求解,并提出了初始约束因子的确定方法及其动态更新策略。通过对算例结果进行分析,验证了该研究方法的可行性。

关键词: 运筹学, 舰船装备, 备件, 多约束, 配置优化, 边际算法, 可用度

Abstract:

Due to the restriction of carrying ability and storage space for support resources, the multi-constraints targets must be considered for the optimization of a carrying spare parts project. As to this problem, the optimization of warship carrying spare parts project at mission preparation phase before sailing is taken as a research background. A carrying spare parts optimization model is established on the basis of the multi-target constraints, such as mass, volume and cost of spare parts and equipment availability. The different constraint targets are transformed to the scale of spare parts resource constraint by introducing Lagrange constraint factors. Marginal algorithm is applied to solve the optimization model, and the determination method of initial factors and its dynamic adjustment policy is presented. In the given example, the calculated result is analyzed, and the feasibility of the proposed method is verified.

Key words: operations research, warship equipment, spare part, multi-constraint, configuration optimization, marginal analysis, availability

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