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Parallel computation framework for optimizing trailer routes in bulk transportation

机译:散装运输中优化拖车路线的并行计算框架

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We consider a rich tanker trailer routing problem with stochastic transit times for chemicals and liquid bulk orders. A typical route of the tanker trailer comprises of sourcing a cleaned and prepped trailer from a pre-wash location, pickup and delivery of chemical orders, cleaning the tanker trailer at a post-wash location after order delivery and prepping for the next order. Unlike traditional vehicle routing problems, the chemical interaction properties of these orders must be accounted for to prevent risk of contamination which could impose complex product-sequencing constraints. For each chemical order, we maintain a list of restricted and approved prior orders, and a route is considered to be feasible if it complies with the prior order compatibility relationships. We present a parallel computation framework that envelops column generation technique for large-scale route evaluations to determine the optimal trailer-order-wash combinations while meeting the chemical compatibility constraints. We perform several experiments to demonstrate the efficacy of our proposed method. Experimental results show that the proposed parallel computation yields a significant improvement in the run time performance. Additionally, we perform sensitivity analysis to show the impact of wash capacity on order coverage.
机译:我们考虑到化学品和液体散装订单的运输时间随机的丰富油轮拖车路线问题。加油机拖车的典型路线包括:从预洗地点采购清洁和准备好的拖车,提取和交付化学订单,在订单交付后在后洗地点清洗加油车,并准备下一个订单。与传统的车辆路线问题不同,必须考虑这些订单的化学相互作用特性,以防止污染的风险,因为污染风险可能会施加复杂的产品排序约束。对于每个化学订单,我们维护一个受限制的和已批准的在先订单清单,并且如果一条路线符合在先订单兼容性关系,则该路线被认为是可行的。我们提出了一个并行计算框架,该框架包含用于大规模路线评估的列生成技术,以确定最佳的挂车顺序洗涤组合,同时满足化学相容性约束。我们进行了几个实验,以证明我们提出的方法的功效。实验结果表明,所提出的并行计算在运行时性能上有显着改善。此外,我们进行敏感性分析以显示清洗量对订单覆盖率的影响。

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