Interface selection in hybrid V2V communications: A hierarchical approach

Takamasa Higuchi, O. Altintas
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引用次数: 8

Abstract

The emergence of new types of applications for connected cars is expected to increase data traffic in vehicular networks. A promising solution is to concurrently use multiple types of radios, dynamically selecting network interface(s) that are likely to achieve the highest performance (i.e., hybrid networking). In this paper, we propose an intelligent interface selection mechanism, tailored to hybrid vehicle-to-vehicle communications. We introduce a novel approach of hierarchical decision making, in which interface selection by vehicles is loosely controlled by a remote central server. The server provides vehicles with recommended interface selection strategy, which is optimized based on the statistical knowledge about road and network conditions. While the vehicles basically follow the recommended strategy, they are allowed to adjust it if they detect actual channel conditions deviating from the statistics on the server. The adjustments are carefully made based on the expected channel load information provided by the server, so that the changes of strategy do not harm the communication performance in neighboring geographical regions. Simulation results show that our solution can significantly reduce the end-to-end latency of packet delivery, compared to conventional selection mechanisms.
混合V2V通信中的接口选择:一种分层方法
联网汽车的新型应用程序的出现预计将增加车辆网络的数据流量。一个很有前途的解决方案是同时使用多种类型的无线电,动态地选择可能实现最高性能的网络接口(即混合网络)。在本文中,我们提出了一种针对混合动力车对车通信的智能接口选择机制。我们引入了一种新的分层决策方法,其中车辆的接口选择由远程中央服务器松散控制。服务器为车辆提供推荐的接口选择策略,该策略基于道路和网络状况的统计知识进行优化。虽然车辆基本上遵循建议的策略,但如果它们检测到实际通道状况偏离服务器上的统计数据,它们可以调整策略。根据服务器提供的预期信道负载信息仔细地进行调整,使策略的变化不会损害相邻地理区域的通信性能。仿真结果表明,与传统的选择机制相比,我们的方案可以显著降低数据包传输的端到端延迟。
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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