Paving the Way Towards Zero-Emission and Robust Inland Shipping

A. Kirichek, J. Pruyn, B. Atasoy, R. R. Negenborn, R. Zuidwijk, J.H.R. Van Duin, K. Tachi, M. Van Koningsveld
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Abstract

Several measures have been developed to prevent emissions from inland water transportation. However, it is challenging to weigh all the aspects to identify the pathway that will ultimately result in zero-emission inland shipping. A data-driven virtual representation of the inland shipping system can be used to evaluate zero-emission strategies, effectiveness of policies and technologies, and consequences of their implementation. This multi-level digital twin can realistically represent the system with all relevant components, which needs to be validated using real-world data. Subsequently, future scenarios can be imposed on the digital twin, and the proposed intervention measures can be applied, based on which their efficiency can be assessed together with the inland shipping sector. This study discusses the essential aspects of designing a digital twin for an IWT. Three aspects are considered essential: individual ships, logistics chains, and infrastructure. As these research topics span various scales, ranging from a single vessel to an entire infrastructure network, an agent-based approach is suitable for forming the basis of the digital twin. Consequently, potential interventions can be considered, ranging from the application of new technologies to individual vessels to policy measures implemented for an entire shipping corridor or various bunker infrastructure strategies in the network. Additionally, the impact of the implemented interventions can be evaluated at any desired scale, ranging from the individual ship level and its emissions to the network level and aggregated emissions in an entire area, or the impact on the logistics chain.
为实现零排放和稳健的内河航运铺平道路
为防止内河水运排放,已制定了若干措施。然而,要权衡所有方面以确定最终实现内河航运零排放的途径是一项挑战。以数据为驱动的内河航运系统虚拟表示法可用于评估零排放战略、政策和技术的有效性及其实施的后果。这种多层次的数字孪生系统可以真实再现该系统的所有相关组成部分,需要使用真实世界的数据进行验证。随后,可以对数字孪生系统施加未来情景,并应用建议的干预措施,在此基础上评估其与内河航运部门的效率。本研究讨论了为内河船舶设计数字孪生的基本方面。三个方面被认为是必不可少的:单个船舶、物流链和基础设施。由于这些研究课题跨越了从单个船舶到整个基础设施网络的不同范围,因此基于代理的方法适合作为数字孪生的基础。因此,可以考虑潜在的干预措施,从对单个船舶应用新技术,到对整个航运走廊或网络中的各种燃料基础设施战略实施政策措施。此外,还可以在任何需要的范围内评估已实施干预措施的影响,从单艘船舶及其排放量到网络水平和整个区域的总排放量,或对物流链的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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