Application of matrices in transport

Dragan Radovanovic
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引用次数: 0

Abstract

The action of linear operators can be represented in a matrix, so it is most convenient to write systems of equations with a large number of unknowns in matrix form. In the following text, the basic operations with matrices will be listed, the existing computer tools in operations with matrices will be pointed out, and finally some practical problems from transportation that can be solved with matrices will be given. The transport chain can be formed by one or more types, with different cargo handling technologies, types of cargo units, types of carriers, all of which affect transport costs and delivery time. On the basis of techno-economic analysis, the best variants of transport chains are generated, which should be known by senders and receivers. The number of combinations can be important, and matrices can be used to determine the most favorable variants. The basic problems in the optimization of the stacking of piece loads (goods) on carriers are the appearance and mass at the places of initial and final operations, which in most cases are of stochastic size, and the distribution of load masses in a static and dynamic sense.
矩阵在运输中的应用
线性算子的作用可以用矩阵来表示,因此用矩阵的形式来表示含有大量未知数的方程组是最方便的。在接下来的文章中,将列出矩阵的基本运算,指出矩阵运算中现有的计算机工具,最后给出一些可以用矩阵解决的运输中的实际问题。运输链可以由一种或多种类型组成,具有不同的货物装卸技术,不同的货物单元类型,不同的承运人类型,这些都会影响运输成本和交货时间。在技术经济分析的基础上,生成了发送方和接收方都知道的运输链的最佳变体。组合的数量可能很重要,可以使用矩阵来确定最有利的变体。载体上的件载(货)堆垛优化的基本问题是初始和最终作业地点的外观和质量,在大多数情况下是随机大小,以及静态和动态意义上的负载质量分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
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0.00%
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34
审稿时长
6 weeks
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