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Performance Comparison of Dynamic Vehicle Routing Methods for Minimizing the Global Dwell Time in Upcoming Smart Cities

机译:动态车辆路径方法对即将到来的智能城市全球停留时间最小化的性能比较

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Traffic jams in urban scenarios are often caused by bottlenecks related to the street topology and road infrastructure, e.g traffic lights and merging of lanes. Instead of addressing traffic flow optimization in a static way by extending the road capacity through constructing additional streets, upcoming smart cities will take advantage of the availability of modern communication technologies to dynamically change the mobility behavior of individual vehicles taking these bottlenecks into account. The underlying overall goal is to minimize the total dwell time of the vehicles within the road network. In this paper, a new bottleneck-aware method for dynamic vehicle routing is introduced and compared to existing methods in comprehensive simulations. As a realistic evaluation scenario, the inner city of Dusseldorf is modeled and the mobility behavior of the cars is represented based on real-world traffic flow data. The simulation results show, that the consideration of bottlenecks in a routing method decreased the average travel time by around 23%. The newly created routing method reduces the average travel time further by around 10%. The simulations also show, that the implementation of dynamic lanes in inner cities, and so the manipulation of the capacity of the bottleneck, most of the time only shift traffic congestion to following bottlenecks without reducing the travel times.
机译:城市情景中的交通拥堵通常由与街头拓扑和道路基础设施相关的瓶颈引起的,例如车道交通灯和合并。通过构建额外的街道,通过构建额外的街道将道路容量延长道路容量,而不是通过构建智能城市来解决交通流量优化,而不是通过构建额外的街道来利用现代通信技术的可用性来动态地改变将这些瓶颈带到考虑这些瓶颈的各个车辆的移动行为。潜在的总体目标是最大限度地减少道路网络内车辆的总停留时间。在本文中,引入了一种新的瓶颈意识到动态车辆路由方法,并与综合模拟中的现有方法相比。作为一个现实的评估情景,杜塞尔多夫的内城是建模的,并且基于现实世界的流量流数据来表示汽车的移动行为。仿真结果表明,在路由方法中考虑瓶颈的考虑将平均旅行时间减少约23%。新创建的路由方法进一步减少了大约10%的平均旅行时间。模拟还显示,在内部城市的动态通道的实施,因此操纵瓶颈的容量,大部分时间只会在不减少旅行时间的情况下将交通拥堵转移到瓶颈。

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