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Optimising truckload operations in third-party logistics: A carbon footprint perspective in volatile supply chain

机译:在第三方物流中优化卡车装卸操作:易变的供应链中的碳足迹观点

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With government and customers driving third-party logistics seeking opportunities to improve operation efficiencies and mitigating carbon emissions in the supply chain, third-party logistics firms have been striving to improve their truckload utilization and vehicle routing operations, especially in emission-regulated countries and volatile business environment. Traditional literature has focused on either truckload utilization or vehicle routing operations but seldom integrating carbon emission mitigation in their daily trucking operations. This paper delineates the operation review of three third-party logistics firms in Hong Kong and develops an organisation based carbon emission measurement metrics for logistics operations. The truckload utilization and routing performance are reviewed, followed by a correlation analysis on the truckload utilization against truck capacity, loading volume, fuel consumption, truck size, travelling distances and number of destinations. An integrated carbon-driven multi-criteria model is developed achieving carbon emission reduction initiatives, time and distance cost penalty, minimizing number of trucks, and improving truck utilization. The integrated mathematical model has been developed into a simulation system which has been tested with evaluated results. The mathematical model is enhanced for the set of cargo items and vehicle fleet with additional factors of arrival time slots and weight. The model assists traffic planners to reduce cargo planning time and optimize the truckload operations. Further development will be focused on adding the dimensions of pallet loading operations and exception rules for customer loading requirements.
机译:随着政府和客户推动第三方物流寻求机会来提高运营效率并减少供应链中的碳排放,第三方物流公司一直在努力提高其卡车装载利用率和车辆路线选择操作,尤其是在排放管制国家和动荡不安的国家商业环境。传统文献集中于卡车负荷利用或车辆路线选择操作,但很少在其日常卡车运输操作中整合减少碳排放的措施。本文概述了香港三家第三方物流公司的运营回顾,并针对物流运营制定了基于组织的碳排放量度指标。审查卡车的利用率和路线选择性能,然后对卡车的利用率与卡车的容量,装载量,燃料消耗,卡车的大小,行驶距离和目的地数量进行相关性分析。开发了一个综合的碳驱动的多标准模型,该模型实现了碳减排计划,时间和距离成本的惩罚,卡车数量的最小化以及卡车利用率的提高。集成的数学模型已开发成仿真系统,并已通过评估结果进行了测试。对于货物项和车队的集合,数学模型得到了增强,并增加了到达时隙和重量的其他因素。该模型可帮助交通规划人员减少货物规划时间并优化卡车装卸操作。进一步的发展将集中在增加托盘装载操作的尺寸和满足客户装载要求的例外规则上。

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