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Semantic transportation planning for food products supply chain ecosystem within difficult geographic zones

机译:困难地理区域内食品供应链生态系统的语义运输计划

摘要

Purpose – In difficult geographical zones (mountain, intra-cities areas, etc.), many shippers, from small and medium enterprises to individuals, may demand delivery of different food products ( fresh, refrigerated, frozen, etc.) in small quantities. On the other side, carrier companies wish to use their vehicles optimally. Taking into account the perishability constraints (short-shelflife, temperature limits, etc.) of the transported food products and environmentalconstraints (pollution, carbon impact) while consolidatingmultiple kinds of food products to use vehicles optimally is not achieved by current transportation planning solutions. The purpose of this paper is to present an interoperable solution of a marketplace, formed by shippers and carriers, dedicated to the schedule of food transport orders. Design/methodology/approach – This transportation planning system named Interoperable-Pathfinder, Order, Vehicle, Environment and Supervisor (I-POVES) is an interoperable multi-agent system, based on the SCEP (supervisor, customer, environment and producer) model (Archimede and Coudert, 2001). Ontologies are developed to create the planning marketplace comprising demands and offers from different sources (multiple shippers and carriers). Findings – A hierarchy ontology for food products. A transporter system ontology. A global ontology that contains all shared concepts used by local ontologies of both shippers and carriers. I-POVES an interoperable model, which facilitates collaboration between carriers and their shippers through its active agents. Practical implications – I-POVES is tested on a case study from the TECCAS Poctefa project, comprising transport and food companies from both sides of the Pyrenees (France and Spain). Originality/value – There has been much work in the literature on the delivery of products, but very few on the delivery of food products. Work related to delivery of food products focuses mostly on timely delivery for avoiding its wastage. In this paper, constraints related to food products and to environment (pollution and carbon impact) of transport resources are taken into account while planning the delivery.
机译:目的–在困难的地理区域(山区,城市内区域等),从中小型企业到个人的许多托运人可能要求少量交付不同的食品(新鲜,冷藏,冷冻等)。另一方面,运输公司希望最佳地使用其车辆。考虑到运输食品的易腐性限制因素(短寿命,温度限制等)和环境限制因素(污染,碳排放影响),而同时通过多种运输工具解决方案无法最佳地整合多种食品以使用车辆。本文的目的是提出一个由托运人和承运人组成的市场互操作解决方案,专门用于食品运输订单的计划。设计/方法/方法–名为Interoperable-Pathfinder,订单,车辆,环境和主管(I-POVES)的运输计划系统是基于SCEP(主管,客户,环境和生产者)模型的可互操作的多主体系统(阿基米德和库尔德(2001)。开发本体以创建包括不同来源(多个托运人和承运人)的需求和报价的计划市场。结果–食品的层次结构本体。运输系统本体。包含托运人和承运人的本地本体使用的所有共享概念的全局本体。 I-POVES一个可互操作的模型,该模型可通过其活动代理商促进承运人与其托运人之间的协作。实际意义–在TECCAS Poctefa项目的案例研究中对I-POVES进行了测试,该项目包括比利牛斯山脉两侧的运输和食品公司(法国和西班牙)。原创性/价值–文献中有关产品交付的工作很多,但有关食品交付的工作很少。与食品交付有关的工作主要集中在及时交付上,以避免浪费。在本文中,在计划交付时要考虑与食品和运输资源的环境(污染和碳影响)有关的约束。

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