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Investigating the impact of real-time path planning on reducing vehicles traveling time

机译:调查实时路径规划对减少车辆旅行时间的影响

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There has been an increasing interest in the issue of real-time path planning based on the exchange of information about traffic conditions in vehicular ad hoc networks (VANETs). Because of the development in hardware, software, and communication technologies. However, real-time applications are facing several challenges for providing reliable communications (V2V and V2I) due to many effective factors which increase the rate of topology change, including high-speed mobility and sparse vehicle density. In this paper, we first establish a real-time path planning strategy which utilizes real-time information about traffic conditions for providing the shortest paths with minimum travel time. This strategy utilizes vehicular ad hoc networks (VANETs) to enable real-time communications among vehicles, roadside units (RSUs), and a central server. Each vehicle can request a shortest-path by sending a simple request packet to the server and waiting for a reply containing a new route as sequence of turning movements. Finally, our path planning strategy is implemented and simulated based on a real map by using Veins framework (with IEEE 802.11 p/WAVE standard). Veins is capable of running OMNET++ and SUMO in parallel. Simulation results confirm that our proposed path planning approach improves significantly the travel time.
机译:基于关于车辆临时网络(VANET)的交通条件的信息交换,对实时路径规划问题越来越兴趣。由于硬件,软件和通信技术的开发。然而,由于许多增加了拓扑变化率的许多有效因素,实时应用面临着提供可靠的通信(V2V和V2I)的若干挑战,包括高速移动性和稀疏车辆密度。在本文中,我们首先建立一个实时路径规划策略,该策略利用关于交通条件的实时信息,以提供最短的旅行时间的最短路径。该策略利用车辆临时网络(VANET)来实现车辆,路边单元(RSU)和中央服务器之间的实时通信。每个车辆都可以通过向服务器发送简单请求数据包并等待包含新路由的回复来请求最短路径。最后,通过使用Veins框架(使用IEEE 802.11 P / Wave标准)来实现和模拟我们的路径规划策略。 VEINS能够并行运行OMNET ++和SUMO。仿真结果证实,我们所提出的路径规划方法可提高旅行时间。

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