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THE MODELS RESEARCH ON OPTIMIZATION OF THE MILITARY FORCES MOVEMENT

机译:军队运动优化的模型研究

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Military forces movement (MFM) is the adjustment of some elements or component in military forces (MF) from its former site or structure to the latter so as to procure the spatial or configurable effectiveness of MF, which is one of two important aspects (static disposition and dynamic movement) to embody the military power. However, owing to no more the optimization models about MFM, the decision of MFM is mostly made by the commander based on him ability, which is often not optimum. No models and its arithmetic is the military command automation not achieved in deed. Therefore, the purpose of this paper is that studies and reveals optimization models of military forces movement systems (MFMS). So several important problems have been studied and discussed about MFMS in this paper. These are as follows: Firstly, this paper systematically analyzes ten key aspects (movement object, movement end-site, movement begin-site, stockpile site, movement route, movement resource, movement capability, movement Consumption, movement time, movement safety) about MFMS. It has abstractly been depicted with mathematic symbols for some key factors relate to these ten aspects. Secondly, the paper gives the mathematics expressions of possible objective and restrictive conditions quantitatively based on MFMS. Thirdly, the paper discusses the ways to establish the various type optimization models of MFMS and its arithmetic. These optimization models and arithmetic that are established based on MFMS can be used in military command automation system.
机译:军事部队运动(MFM)是从其前网站或建筑物到后者的某些元素或部件的调整,以便采购MF的空间或可配置效果,这是两个重要方面的一个(静态)处置和动态运动)体现军事力量。然而,由于关于MFM的优化模型,MFM的决定主要由指挥官基于他的能力,这通常不是最佳的。没有模型及其算术是在契约中未实现的军事指挥自动化。因此,本文的目的是研究和揭示军事力量运动系统(MFMS)的优化模型。因此,在本文中研究了几个重要问题并讨论了MFMS。这些如下:首先,本文系统地分析了十个关键方面(运动对象,移动端点,运动开始现场,库存站点,移动路线,移动资源,运动能力,运动消耗,运动时间,运动安全) MFMS。它已经抽象地描绘了数学符号,以实现一些关键因素与这十个方面有关。其次,本文以MFMS定量地定量地提供了可能的客观和限制条件的数学表达。第三,本文讨论了建立MFMS的各种型优化模型及其算术的方法。基于MFMS建立的这些优化模型和算术可用于军事指挥自动化系统。

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