基于车辆自组织网络的交通感知视频传播

Guilherme Maia, C. Rezende, L. Villas, A. Boukerche, A. C. Viana, Andre L. L. Aquino, A. Loureiro
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引用次数: 28

摘要

向一组车辆传播视频是车载自组织网络设想的许多基本服务之一。为此,在本文中,我们描述了VoV,一个在极端交通条件下运行的视频传播协议。与大多数专注于始终连接的网络并解决其固有的广播风暴问题的现有方法相反,VoV旨在在任何类型的流量条件下运行。我们提出了一种新的基于地理的广播抑制机制,该机制赋予特定转发区域内车辆更高的广播优先权。此外,车辆在本地缓冲区中存储和携带接收到的信息,以便将它们转发给可能由于碰撞或间歇性断开连接而未被第一次传播过程覆盖的车辆。最后,VoV采用了一种速率控制机制,该机制设置了消息必须传输的速度,以避免信道过载,并克服IEEE 802.11p采用的信道跳变机制带来的同步效应。当与两种众所周知的解决方案(UV-CAST和AID)进行比较时,我们发现我们的建议在消息传递、延迟和开销方面更有效。
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Traffic aware video dissemination over vehicular ad hoc networks
Video dissemination to a group of vehicles is one of the many fundamental services envisioned for Vehicular Ad hoc Networks. For this purpose, in this paper we describe VoV, a video dissemination protocol that operates under extreme traffic conditions. Contrary to most existing approaches that focus exclusively on always-connected networks and tackle the broadcast storm problem inherent to them, VoV is designed to operate under any kind of traffic condition. We propose a new geographic-based broadcast suppression mechanism that gives higher priority to broadcast to vehicles inside especial forwarding zones. Furthermore, vehicles store and carry received messages in a local buffer in order to forward them to vehicles that were not covered by the first dissemination process, probably as a result of collisions or intermittent disconnections. Finally, VoV employs a rate control mechanism that sets the pace at which messages must be transmitted in an attempt to avoid channel overloading and to overcome the synchronization effects introduced by the channel hopping mechanism employed by IEEE 802.11p. When compared to two well-known solutions -- UV-CAST and AID -- we show that our proposal is more efficient in terms of message delivery, delay and overhead.
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Traffic aware video dissemination over vehicular ad hoc networks Equilibrium sensing time for distributed opportunistic access incognitive radio networks Green wireless: towards minimum per-bit linear energy consumption in wireless communications Performance modeling and analysis of IEEE 802.11 wireless networks with hidden nodes Algorithms for channel assignment in mobile wireless networks using temporal coloring
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