Microscopic experimental evaluation of multi-hop video streaming protocol in vehicular networks

N. Wisitpongphan, F. Bai
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引用次数: 0

Abstract

Most routing protocols in vehicular networks are geared toward supporting safety applications. In this paper, we shift our attention to study if short-range communication (DSRC or WiFi) could also support real-time video streaming applications for moving vehicles. Rendering real-time video streaming in vehicular network is a challenging task, since video streaming applications tend to have stringent Quality-of-Service (QoS) requirements while vehicle-level mobility and severe outdoor fading channel significantly affect route stability. We present a Quality-of-Service routing framework called multi-Criteria Ad hoc Real-time Streaming (CARS). This framework not only provides a multi-hop route that satisfies the stringent QoS requirements imposed by multimedia applications, but also is flexible enough to support a variety of applications with different types of QoS requirements. Moreover, our proposed routing framework accurately monitors network conditions and switches to a better route as the quality of the ongoing route significantly degrades. We further implement our CARS protocol into a small fleet of research vehicles and experiment the implemented protocol in realistic driving scenarios. We learn valuable lessons through empirical experiments and our first-hand experience helps develop a number of optimization policies to further improve performance.
车载网络中多跳视频流协议的微观实验评价
车辆网络中的大多数路由协议都是为了支持安全应用而设计的。在本文中,我们将注意力转移到研究短距离通信(DSRC或WiFi)是否也可以支持移动车辆的实时视频流应用。由于视频流应用往往具有严格的服务质量(QoS)要求,而车辆级移动性和严重的室外衰落信道严重影响路由稳定性,因此在车载网络中呈现实时视频流是一项具有挑战性的任务。我们提出了一种服务质量路由框架,称为多标准自组织实时流(CARS)。该框架不仅提供了满足多媒体应用严格的QoS要求的多跳路由,而且还具有足够的灵活性,可以支持具有不同类型QoS要求的各种应用。此外,我们提出的路由框架准确地监控网络状况,并在当前路由质量显著下降时切换到更好的路由。我们进一步在一小批研究车辆中实施了CARS协议,并在现实驾驶场景中对实施的协议进行了实验。我们通过经验实验获得了宝贵的经验教训,我们的第一手经验有助于制定许多优化策略,以进一步提高性能。
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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