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Practical Optimization for Wireless Network with Intra-Session Network Coding and SIC

机译:会话内网络编码和SIC对无线网络的实用优化

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The individual applications of network coded opportunistic routing and successive interference cancellation have been proven with significant improvement on throughput performance of wireless multi-hop networks, but there lacks practical optimization on their combination application. Based on a TDMA system, this paper models the throughput maximization as network utility function maximization problem. Applying Lagrangian dual decomposition theory and sub-gradient method, the network utility maximization problem is decomposed into source rate control, routing with NCOR and scheduling under SIC. These three subproblems are solved independently and linked by queue length to achieve coordinating and solve joint maximizing problem of network throughput. To provide practical optimization, this paper implements the joint optimization framework with low-overhead distributed algorithm and verifies its performance through experiments. The numeral results show that the cross-layer combination of NCOR and SIC achieves significant effect on enhancing throughput, improving efficiency and reducing slot overhead, compared to cross-layer or layered models which only consider network coding.
机译:已经证明了网络编码的机会路由和连续干扰消除的各个应用可以显着提高无线多跳网络的吞吐性能,但是在组合应用方面却缺乏实际的优化。基于TDMA系统,本文将吞吐量最大化建模为网络效用函数最大化问题。应用拉格朗日对偶分解理论和子梯度方法,将网络效用最大化问题分解为源速率控制,NCOR路由和SIC下的调度。这三个子问题可以独立解决,并通过队列长度链接在一起,以实现协调并解决网络吞吐量的联合最大化问题。为了提供实际的优化,本文采用低开销的分布式算法实现了联合优化框架,并通过实验验证了其性能。数值结果表明,与仅考虑网络编码的跨层或分层模型相比,NCOR和SIC的跨层组合在提高吞吐量,提高效率和减少时隙开销方面具有显着效果。

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