多跳无线网络实时传输的再生节点

Rui Ma, J. Ilow
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引用次数: 16

摘要

本文扩展了我们之前在多跳无线网络中引入的一种新的数据链路层机制的分析,用于实时业务提供。为了防止在连接源和目的的不可靠路径上的数据包丢失,(i)数据包传输沿着连接联合节点的多条路径分布,(ii)利用冗余数据包在这些中间连接上恢复丢失的数据包。网络中实际进行丢包恢复的再生节点(RNs),最大限度地减少目的地的累计丢包数。这种包级前向错误控制(FEC)和多路径路由的联合应用,可以满足固定延迟和保证丢包率(PLR)等实时传输的要求。该方案根据报文的PLR选择多条路径进行报文转发,从而实现负载均衡。该方案具有足够的灵活性,可以适应各种延迟和可靠性限制,可以根据具体应用进行定制。蒙特卡罗仿真证明了该方案在不同拓扑和PLR场景下的鲁棒性,并特别注意了网络中RN位置的选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Regenerating nodes for real-time transmissions in multi-hop wireless networks
The paper extends the analysis of a novel data link layer mechanism introduced in our previous work for real-time service provisioning in multi-hop wireless networks. To combat packet loss along unreliable paths connecting the source with the destination, (i) packet transmissions are distributed along the multiple paths connecting joint nodes and (ii) the redundancy packets are utilized to recover the lost packets on these intermediate connections. The regenerating nodes (RNs), where the actual packet loss recovery is performed in the network, minimize the accumulated number of lost packets at the destination. This joint application of packet level forward error control (FEC) and multiple path routing allows the requirements of real-time transmissions, such as fixed delays and guaranteed packet loss rate (PLR), to be met. The proposed scheme achieves load balancing along the multiple paths which are chosen for packet forwarding based on their PLR. The scheme is sufficiently flexible to accommodate various constraints for delay and reliability that can be tailored to the specific applications. Monte Carlo simulations demonstrate the robust performance of the proposed scheme in different topology and PLR scenarios, with special attention given to the choice of the RN positions in the network.
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