Vehicles capacitate two-stage solid transportation problem with bi-fuzzy coefficients through genetic algorithm

A. Kuiri, D. Barman, Barun Das
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Abstract

This study deals with a vehicles capacitate two-stage solid transportation problem (VCTSSTP), where in each stage and each path there are two different capacitate vehicles. And as per the quantity of transportation, the larger and/or smaller capacitance vehicles are used. Moreover, the coefficients of the model are assumed bi-fuzzy in nature. The items are breakable in nature and to reduce the breakablity rate of the item extra safety cost is introduced here. The model is justified through a numerical example by using evolutionary genetic algorithm (GA). To ensure and establish the stability of the decision, results are compared through different solving method based on GRG techniques. Also a statistical test analysis of varience (ANOVA) illustrate and signify the feasibility and validity of the proposed model and techniques with the high rate of probability.
利用遗传算法求解具有双模糊系数的两阶段固体运输问题
本文研究了车辆有容两阶段固体运输问题(VCTSSTP),其中在每一阶段和每一条路径上都有两辆不同的有容车辆。并且根据运输的数量,使用较大和/或较小的电容车辆。此外,假设模型的系数是双模糊的。物品本质上是易碎的,为了降低物品的易碎率,这里引入了额外的安全成本。利用进化遗传算法(GA)对模型进行了数值验证。为了保证和建立决策的稳定性,比较了基于GRG技术的不同求解方法的结果。此外,方差分析(ANOVA)的统计检验也以较高的概率率说明了所提出的模型和技术的可行性和有效性。
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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