Application of Cube IQ software and multicriteria optimization models for the selection of vehicles for the transport of goods in the Serbian Armed Forces

Ivana Đuričić
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引用次数: 1

Abstract

Introduction/purpose: An adequate selection of vehicles used for the transport of goods is a very important factor that affects the economical and rational use of vehicle fleets, as well as the quality and efficiency of carrying out transport activities in the Serbian Armed Forces. The goal of this work is to design a model that should be of help to the traffic service authorities to select the vehicle that is best for the performance of the assigned transport task based on the defined criteria. Methods: This paper therefore proposes a model for the selection of vehicles for the transport of goods using a fuzzy logic system, as a type of artificial intelligence system. In order to solve the problem of choosing a vehicle for the transport of goods, five criteria are defined in the work based on a survey of the commanders of the transport lines, which represent the input values in the fuzzy logic system.The vehicle is selected based on five criteria. The input variables are represented by three membership functions, while the output variable is defined by five membership functions. All the rules in the fuzzy logic system are determined using the rule premise weight aggregation method (ATPP), which enables the formation of a rule base based on experience. By applying this method and based on the number of input variables and the number of their membership functions, a base of 243 rules was defined. The values of the weighting coefficients of the membership functions were determined using the LMAW method. A user "interface" program was created for the developed fuzzy logic system, which enables the practical application of this model. Results: The model was tested on the example of choosing the optimal vehicle for goods transported to the IVP "Pasuljanske livade" in 2020. The selection of the optimal means of transport was made among the transport motor vehicles that are most used in the Serbian Army, namely: TAM 150 T11, FAP 2026 and FAP 1118. After packing all three vehicles with these goods in Cube IQ and after performing calculation and evaluation of individual vehicles in the user "interface" program, the values of the output variable for each vehicle were obtained. The obtained values for each vehicle were ranked and the optimal vehicle for the transport of defined goods was shown to be the FAP 1118. Conclusion: The significance of this study is that it is among the first ones to demonstrate the application of a model based on artificial intelligence that solves the problem of vehicle selection for the transportation of movable assets. The study provides considerable opportunity for further research.
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应用Cube IQ软件和多标准优化模型选择塞尔维亚武装部队运输货物的车辆
前言/目的:适当选择用于运输货物的车辆是一个非常重要的因素,它影响到经济和合理地使用车队,以及塞尔维亚武装部队进行运输活动的质量和效率。这项工作的目标是设计一个模型,该模型应该有助于交通服务当局根据定义的标准选择最适合指定运输任务性能的车辆。方法:因此,本文提出了一个使用模糊逻辑系统作为一种人工智能系统来选择货物运输车辆的模型。为了解决货物运输车辆的选择问题,在对运输线路指挥员进行调查的基础上,确定了五个标准,它们代表模糊逻辑系统中的输入值。车辆的选择基于五个标准。输入变量由三个隶属函数表示,而输出变量由五个隶属函数定义。模糊逻辑系统中的所有规则都采用规则前提权重聚合法(ATPP)确定,从而形成基于经验的规则库。通过应用该方法,根据输入变量的数量及其隶属函数的数量,定义了243条规则。采用LMAW法确定隶属函数的权重系数值。为开发的模糊逻辑系统编写了用户界面程序,实现了该模型的实际应用。结果:以2020年“Pasuljanske livade”IVP货物运输车辆选择为例,对该模型进行了验证。在塞尔维亚军队最常用的运输机动车辆中选择最佳运输工具,即:TAM 150 T11、FAP 2026和FAP 1118。在Cube IQ中将所有三辆车都装上这些货物,并在用户“界面”程序中对每辆车进行计算和评估后,得到每辆车的输出变量值。对每辆车的所得值进行排序,并显示用于运输指定货物的最佳车辆为FAP 1118。结论:本研究的意义在于,首次展示了基于人工智能的模型在解决动产运输车辆选择问题上的应用。这项研究为进一步的研究提供了相当大的机会。
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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