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首页> 外文期刊>Transportation planning and technology >Multi-objective bilevel construction material transportation scheduling in large-scale construction projects under a fuzzy random environment
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Multi-objective bilevel construction material transportation scheduling in large-scale construction projects under a fuzzy random environment

机译:模糊随机环境下大型建设项目多目标双层建材运输调度

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摘要

This paper investigates a transportation scheduling problem in large-scale construction projects under a fuzzy random environment. The problem is formulated as a fuzzy, random multi-objective bilevel optimization model where the construction company decides the transportation quantities from every source to every destination according to the criterion of minimizing total transportation cost and transportation time on the upper level, while the transportation agencies choose their transportation routes such that the total travel cost is minimized on the lower level. Specifically, we model both travel time and travel cost as triangular fuzzy random variables. Then the multi-objective bilevel adaptive particle swarm optimization algorithm is proposed to solve the model. Finally, a case study of transportation scheduling for the Shuibuya Hydropower Project in China is used as a real world example to demonstrate the practicality and efficiency of the optimization model and algorithm.
机译:本文研究了模糊随机环境下大型建设项目的运输调度问题。该问题被公式化为模糊,随机的多目标双层优化模型,在该模型中,建筑公司根据最小化总运输成本和运输时间的准则来决定从每个来源到每个目的地的运输量,而运输机构选择他们的运输路线,以使总旅行成本在较低水平上最小化。具体来说,我们将旅行时间和旅行成本都建模为三角模糊随机变量。然后提出了多目标二级自适应粒子群优化算法对模型进行求解。最后,以中国水布ya水电枢纽的运输调度为例,以实际案例证明了优化模型和算法的实用性和有效性。

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