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首页> 外文期刊>International Journal of Distributed Sensor Networks >MAC2 Enabling multicasting and congestion control with multichannel transmission for intelligent vehicle terminal in Internet of Vehicles
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MAC2 Enabling multicasting and congestion control with multichannel transmission for intelligent vehicle terminal in Internet of Vehicles

机译:MAC2在车联网中通过多通道传输实现多播和拥塞控制

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Internet of Vehicles has become a promising way to realize the evolution from vehicular ad hoc networks and next-generation intelligent transportation system into future autonomous driving scenarios, clean-energy intelligent vehicles, and Smart Cities. However, multicasting service messages on available service channels and periodic exchanges of beacon messages on control channel cause the problem of efficiently scheduling those messages via multichannel transmission for intelligent vehicle terminal, to support real-world applications in Internet of Vehicles scenario. In this article, we investigate the intelligent vehicle terminal architecture and, particularly, design the wireless communication board by incorporating multicasting and congestion control modules. Especially, we present a multicast data delivery scheme with random-delay lowest-cost constraint to transfer service messages on service channels. Furthermore, a priority-aware congestion control scheme is also proposed by considering differentiated priorities of beacon messages on control channel, to cope with the congestion problem at bottleneck vehicle node. Based on the proposed schemes, we build up the RanLow (Random-delay Lowest-cost) module and the priority-aware congestion control (PARCEL) module by enabling multicasting and congestion control together in wireless communication board of the intelligent vehicle terminal architecture. Finally, the experimental results and comparison show that our devised RanLow module and PARCEL module are feasible and more efficient than existing schemes.
机译:车联网已经成为实现从车载自组织网络和下一代智能交通系统到未来自动驾驶场景,清洁能源智能车和智能城市的演进的有前途的方式。然而,在可用服务信道上多播服务消息以及在控制信道上的信标消息的定期交换引起了问题,该问题是通过多通道传输为智能车辆终端有效地调度那些消息,以支持车辆互联网场景中的实际应用。在本文中,我们研究了智能车辆终端架构,尤其是通过结合多播和拥塞控制模块来设计无线通信板。特别是,我们提出了一种具有随机延迟最低成本约束的组播数据传递方案,以在服务信道上传输服务消息。此外,还考虑控制信道上信标消息的不同优先级,提出了一种优先级感知的拥塞控制方案,以解决瓶颈车辆节点的拥塞问题。基于提出的方案,我们通过在智能车辆终端架构的无线通信板中同时启用多播和拥塞控制,构建了RanLow(随机延迟最低成本)模块和优先级感知拥塞控制(PARCEL)模块。最后,实验结果和比较结果表明,我们设计的RanLow模块和PARCEL模块比现有方案可行且效率更高。

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