无线网状网络中具有信源分集和信源间译码的可靠分层多播

S. Tarnoi, W. Kumwilaisak
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引用次数: 0

摘要

提出了一种在无线网状网络中具有信源分集和信源间译码的可靠分层多播。源分集技术提供了路径分集,为恶劣环境下的分层传输提供了更好的吞吐量。针对每个源,建立优化公式,求出各传输层的最佳传输路径。该公式的目标是最大限度地增加传输层数和传输可靠性。提供最佳总吞吐量的源被选择为主要源,而其余源将作为次要源。当主源无法满足某些传输层的QoS保证时,选择具有最佳QoS参数的辅助源将该层传输到目的地。用于传输的辅助源数量不断增加,直到满足所有传输层的QoS保证或使用了所有网络资源。为了有效地利用资源,网络编码被部署到来自同一来源的多播层。不同来源的网络编码数据可以一起使用来解码发送数据。换句话说,在每个目的地,它只需要来自不同来源的足够数量的数据包来恢复所有传输数据。不同网络拓扑的仿真结果表明,在无线有损环境下,分层多播在吞吐量和QoS保障方面都有提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliable layered multi-cast with source diversity and inter-source network decoding in wireless mesh networks
This paper presents a reliable layered multi-cast with source diversity and inter-source network decoding in wireless mesh networks. The source diversity technique gives path diversity providing a better throughput for layered transmission under hostile environment. For each source, an optimization formulation is set up to find the best transmission route of each transmitting layer. The objectives of the formulation are to maximize a number of transmitting layers and transmission reliability. The source providing the best overall throughput is selected to be the primary source, while the rest will be secondary sources. When the Quality-of-Service (QoS) guarantee of some transmitting layers cannot be fulfilled by the primary source, the secondary source with the best QoS parameters is selected to transmit the layer to destinations. The number of secondary sources used for transmissions is increased until the QoS guarantees of all transmitting layers are satisfied or all network resources are utilized. Network coding is deployed to multi-cast layers from the same source for efficient resource usage. Network coding data from different sources can be used together to decode the transmitting data. In other words, at each destination, it needs only a sufficient number of packets from different sources to recover all transmitting data. Simulations with different network topologies show the improvement in throughput and QoS guarantees of layered multi-cast under wireless lossy environment.
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