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首页> 外文期刊>Selected Areas in Communications, IEEE Journal on >Delay Optimization and Cross-Layer Design in Multihop Wireless Networks With Network Coding and Successive Interference Cancelation
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Delay Optimization and Cross-Layer Design in Multihop Wireless Networks With Network Coding and Successive Interference Cancelation

机译:具有网络编码和连续干扰消除功能的多跳无线网络中的延迟优化和跨层设计

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摘要

Network coding (NC) and multipacket reception with successive interference cancelation (SIC) have been shown to improve the performance of multihop wireless networks (MWNs). However, previous work emphasized maximization of network throughput without considering quality of service (QoS) requirements, which may lead to high packet delays in the network. The objective of this work is minimization of packet delay in a TDMA-based MWN that is jointly utilizing NC and SIC techniques for a given traffic demand matrix. We assume conflict-free scheduling and allow multipath routing. We formulate a cross-layer optimization that assigns time slots to links in a way that the average packet delay is minimized. The problem formulation results in a difficult mixed integer nonlinear programming (MINLP) that the state-of-art software can only solve for very small-sized networks. For large networks, we develop a heuristic approach that iteratively determines the optimal solution. We present numerical results, which show that the average packet delay and traffic handling capacity of a network, using w/o NC+SIC, NC, SIC and NC+SIC schemes, improves from left to right. The traffic capacity of NC+SIC is double of the w/o NC+SIC. Thus, combined utilization of NC and SIC techniques results in significant performance improvement.
机译:网络编码(NC)和具有连续干扰消除(SIC)的多分组接收已被证明可以改善多跳无线网络(MWN)的性能。但是,先前的工作强调在不考虑服务质量(QoS)要求的情况下最大化网络吞吐量,这可能导致网络中的高数据包延迟。这项工作的目的是在基于TDMA的MWN中最小化数据包延迟,该MWN针对给定的流量需求矩阵联合使用NC和SIC技术。我们假设无冲突调度,并允许多路径路由。我们制定了一种跨层优化方法,该方法以最小化平均数据包延迟的方式为链接分配时隙。问题的表述导致了困难的混合整数非线性规划(MINLP),现有技术只能解决非常小的网络。对于大型网络,我们开发了一种启发式方法,可以迭代地确定最佳解决方案。我们提供的数值结果表明,使用w / o NC + SIC,NC,SIC和NC + SIC方案的网络的平均数据包延迟和流量处理能力从左向右提高。 NC + SIC的通信量是无NC + SIC的两倍。因此,NC和SIC技术的联合利用可显着提高性能。

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