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A cross-layer approach for real-time multimedia streaming on wireless peer-to-peer ad hoc network

机译:无线对等自组织网络上实时多媒体流传输的跨层方法

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摘要

Peer-to-peer (P2P) live streaming over mobile ad hoc network (MANET) is a state-of-the-art technique for wireless multimedia applications, such as entertainments and disaster recovery. The peers share the live streaming over MANET via multi-hop wireless link, so an efficient data delivery scheme must be required. However, the high churn rate and the frequent mobility baffle the P2P membership management and overlay maintenance. The unreliable wireless connection of MANET leads to the difficulties of large-scale and real-time streaming distribution, and a lack of overlay proximity leads to the inefficient streaming delivery. We present a cross-layer design for P2P over MANET to manage and maintain the overlay, and select efficient routing path to multicast media streams. Our proposed scheme (COME-P2P) integrates both P2P DHT-based lookup and IPv6 routing header to improve the delivery efficiency. Through the cross-layer design, the low layer detects mobility for informing high layer to refine the finger table, and high layer maintains the efficient multicast path for informing low layer to refine the routing table. How to keep stable routing paths for live streaming via IPv6 routing is the main contribution of this paper. The overlay proximity can shorten routing propagation delay, and the hop-by-hop routing can avoid the traffic bottleneck. Through the mathematical analysis and simulation results, COME-P2P can be demonstrated to achieve high smoothness and reduce signaling overhead for live streaming.
机译:通过移动自组织网络(MANET)进行的点对点(P2P)实时流传输是用于娱乐和灾难恢复等无线多媒体应用程序的最新技术。对等方通过多跳无线链路在MANET上共享实时流,因此必须要求一种有效的数据传递方案。但是,高客户流失率和频繁的移动性阻碍了P2P成员资格管理和覆盖维护。 MANET的无线连接不可靠导致大规模和实时流分发的困难,而缺乏覆盖邻近性导致效率低的流交付。我们提出了一种用于MANET上的P2P的跨层设计,以管理和维护覆盖,并选择到组播媒体流的有效路由路径。我们提出的方案(COME-P2P)集成了基于P2P DHT的查找和IPv6路由标头,以提高传递效率。通过跨层设计,低层检测移动性以通知高层以细化指状表,而高层保持有效的组播路径以通知低层以细化路由表。如何为通过IPv6路由的实时流保持稳定的路由路径是本文的主要贡献。覆盖邻近度可以缩短路由传播延迟,并且逐跳路由可以避免流量瓶颈。通过数学分析和仿真结果,可以证明COME-P2P具有很高的平滑度并减少了实时流的信令开销。

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