Comparing generic and dedicated tools of discrete-event simulation for examining inland waterway transportation services

Jonas zum Felde, C. Alias, Alexander Goudz
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引用次数: 3

Abstract

Many different software tools are available for discrete-event simulation in the context of logistics. These tools have usually been developed with a focus on a broad range of logistics applications, including production, assembly, material handling, human resources planning, or external transportation. Generally, these tools do not cover waterway transportation at all. Hence, the available solutions hardly offer any specialized features or functionality for the analysis of inland waterway transportation. The few tools focusing on inland waterway transportation are also not available for purchase. In view of the deeper integration of IWT in global logistics chains and, thus, the rising complexity of operations, DES tools have begun to be used for detailed analyses of various transport-related matters. Due to the lack of appropriate solutions in the market though, the decision-maker can only select between buying an existing generic software solution and adapting it to the specific requirements in order to simulate an inland waterway system or ‘making’ their own solution in the sense of developing a highly specialized proprietary simulation tool designed for the exclusive use in the designated application area. The resulting choice is rarely an easy decision, and the optimal route is often unclear. The process of creating a simulation model for inland waterways is a trade-off between the quality of results and the limit of resource expenditure. Furthermore, the scalability of the simulation needs to be assessed: for generic software, scalability may not be unlimited whereas it may not even be automatically given for a dedicated solution. This work compares generic and dedicated tools of discrete-event simulation for examining a decentralized waterborne container transportation service on the basis of a set of meaningful criteria. Both the simulation results and the model features are part of the comparative analysis. By extracting the benefits of both approaches and drawing a conclusion, this article aims at determining the quality of both approaches in examining a logistics problem. Additionally, their transferability to other similar problems and the usefulness of either approach is considered.
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比较检验内河运输服务的离散事件模拟的通用和专用工具
有许多不同的软件工具可用于物流环境中的离散事件仿真。这些工具通常是针对广泛的物流应用而开发的,包括生产、装配、材料处理、人力资源规划或外部运输。一般来说,这些工具根本不包括水路运输。因此,现有的解决方案几乎没有提供任何专门的特性或功能来分析内河运输。专注于内河运输的少数工具也无法购买。鉴于内河运输与全球物流链的更深层次的融合,因此,业务的复杂性日益增加,数据分析工具已开始用于详细分析各种与运输有关的事项。由于市场上缺乏适当的解决方案,决策者只能选择购买现有的通用软件解决方案并使其适应特定要求,以模拟内河航道系统,或者“制定”自己的解决方案,即开发高度专业化的专有仿真工具,专为指定应用领域的独家使用而设计。最终的选择很少是一个容易的决定,最佳路线往往是不明确的。创建内陆水道模拟模型的过程是结果质量与资源消耗限制之间的权衡。此外,需要评估模拟的可伸缩性:对于通用软件,可伸缩性可能不是无限的,而对于专用解决方案,它甚至可能不会自动给定。这项工作比较了离散事件模拟的通用工具和专用工具,用于在一套有意义的标准的基础上检查分散的水运集装箱运输服务。仿真结果和模型特征都是比较分析的一部分。通过提取两种方法的好处并得出结论,本文旨在确定在检查物流问题的两种方法的质量。此外,还考虑了它们对其他类似问题的可转移性以及两种方法的有用性。
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