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首页> 外文期刊>Vehicular Technology, IEEE Transactions on >Bandwidth-Aware High-Throughput Routing With Successive Interference Cancelation in Multihop Wireless Networks
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Bandwidth-Aware High-Throughput Routing With Successive Interference Cancelation in Multihop Wireless Networks

机译:多跳无线网络中具有带宽且具有连续干扰消除功能的宽带感知高吞吐量路由

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摘要

Successive interference cancelation (SIC) is a new physical-layer technique that enables the receiver to decode composite signals from multiple transmitters sequentially. The introduction of SIC improves the path bandwidth. In this paper, we focus on the design of a bandwidth-aware routing protocol with SIC, aiming at achieving high overall end-to-end throughput. We develop an for a routing protocol to identify beneficial SIC opportunities that improve spatial reuse without impacting transmission quality. To further explore the benefits of SIC, we formulate the problem of SIC-aware path bandwidth computation as a linear program and design a distributed heuristic algorithm with polynomial complexity. A routing metric capturing the benefit of SIC in terms of bandwidth and network resource is proposed, by which our routing protocol can choose a path satisfying the bandwidth requirement of the current flow and reserving more network resource for the subsequent ones. Simulation results show that our routing protocol achieves significant gains in network throughput and SIC ratio compared with other routing protocols.
机译:连续干扰消除(SIC)是一种新的物理层技术,使接收器能够依次解码来自多个发射器的复合信号。 SIC的引入改善了路径带宽。在本文中,我们着重于设计具有SIC的带宽感知路由协议,旨在实现较高的整体端到端吞吐量。我们开发了一种路由协议,以识别有益的SIC机会,从而在不影响传输质量的情况下改善空间复用。为了进一步探索SIC的好处,我们将SIC感知路径带宽计算问题表示为线性程序,并设计了具有多项式复杂度的分布式启发式算法。提出了一种在带宽和网络资源方面都可以充分利用SIC优势的路由度量,通过该路由度量,我们的路由协议可以选择一条满足当前流量带宽需求的路径,并为后续路径保留更多的网络资源。仿真结果表明,与其他路由协议相比,我们的路由协议在网络吞吐量和SIC比率方面均取得了显着提高。

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