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首页> 外文期刊>IEEE Transactions on Intelligent Transportation Systems >Cooperative Multi-Vessel Systems in Urban Waterway Networks
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Cooperative Multi-Vessel Systems in Urban Waterway Networks

机译:城市水路网络中的合作多血管系统

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摘要

Urban waterways have great potential in cargo transport to relieve the congestion in the overloaded road networks. This paper explores the potential of applying cooperative multi-vessel systems (CMVSs) to improve the safety and efficiency of transport in urban waterway networks. A framework consisting of vessel train formation (VTF) and cooperative waterway intersection scheduling (CWIS) is proposed. Two types of controllers are introduced. Intersection controllers solve the CWIS problems and assign each vessel a desired time of arrival and vessel controllers are responsible for the VTF in waterway segments and the timely arrival at the intersections. An alternating direction method of multipliers (ADMM)-based negotiation framework is proposed for the cooperation among the controllers. The simulation experiments involving the scenarios in which up to 50 vessels sailing in the canal network in Amsterdam are carried out to illustrate the effectiveness of the proposed approach. In the simulation of an isolated intersection, rescheduling is triggered when some vessels cannot arrive on time. Although some ASVs arrive later, the time that is needed for all the ASVs to pass through is the same after rescheduling. Moreover, we compare the cooperative situation with the proposed CMVSs with a baseline situation. In the baseline situation, vessels avoid collisions using the generalized velocity obstacle (GVO) method and cross the intersection with a first in, first out rule. The CMVSs show better path following performance, while the GVO method needs fewer velocity changes. From the perspective of efficiency, the CMVSs help to reduce the total time to pass through the intersection.
机译:城市水道在货物运输方面有很大的潜力,以缓解超载的道路网络中的拥堵。本文探讨了应用合作多血管系统(CMVS)来提高城市水路网络运输安全性和效率的潜力。提出了一种由船舶火车形成(VTF)和合作水路交叉调度(CWIS)组成的框架。引入了两种类型的控制器。交叉控制器解决了CWIS问题并分配了每个船舶的所需时间,船舶控制器负责水道段中的VTF,并且及时到达交叉口。为控制器之间的合作提出了基于乘法器(ADMM)的协商框架的交替方向方法。涉及在阿姆斯特丹运河网络中航行最多50艘船的情况的仿真实验,以说明所提出的方法的有效性。在孤立交叉口的模拟中,当一些船只无法准时到达时,重新安排被触发。虽然一些ASV稍后到达,但重新安排后,所有ASV都会通过的时间是相同的。此外,我们将合作局势与拟议的CMVS进行比较,以基线情况。在基线情况下,船只避免使用广义速度障碍物(GVO)方法的碰撞,并将交叉点交叉,首先进出规则。 CMVSS在性能后显示出更好的路径,而GVO方法需要更少的速度变化。从效率的角度来看,CMVS有助于减少通过交叉口的总时间。

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