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A bridging-based solution for efficient multicast support in wireless mesh networks

机译:基于桥接的解决方案,可在无线网状网络中提供有效的多播支持

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Wireless mesh networking is a promising, cost effective and efficient technology for realizing backhaul networks supporting high quality services. In such networks, multicast data are transmitted blindly without any mechanism protecting data from loss, ensuring data reception, and optimizing channel allocation. The multicast services may undergo, then, very high data loss ratio which is exacerbated with the number of hops. In this paper, we propose a Reliable Multicast Distribution System (RMDS) to optimize multicast packets transmission in bridged networks. Relying on a modification of the IGMP snooping protocol, RMDS enables reliable services provisioning support in common wireless mesh networks. In particular, RMDS only exploits the local knowledge of a particular node to compute the multicast tree, which significantly reduces the signalling overhead in comparison with network layer and overlay solutions. Simulation results elucidate that RMDS optimizes resources' allocation by reducing significantly the network load, the media access delay and the data drop rate compared to the classical approach, which is based on the combination of spanning tree algorithm and IGMP snooping protocol.
机译:无线网状网络是一种有前景的,具有成本效益的高效技术,用于实现支持高质量服务的回程网络。在这样的网络中,组播数据是盲目传输的,没有任何机制可以防止数据丢失,确保数据接收并优化信道分配。然后,多播服务可能会经历非常高的数据丢失率,这会随着跳数的增加而加剧。在本文中,我们提出了一种可靠的组播分发系统(RMDS),以优化桥接网络中的组播数据包传输。依靠对IGMP侦听协议的修改,RMDS在常见的无线网状网络中实现了可靠的服务供应支持。特别地,RMDS仅利用特定节点的本地知识来计算多播树,与网络层和覆盖解决方案相比,这大大减少了信令开销。仿真结果表明,与传统方法(基于生成树算法和IGMP侦听协议的组合)相比,RMDS通过显着减少网络负载,媒体访问延迟和数据丢失率来优化资源分配。

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