利用MIMO中继实现多跳无线网络的高性能运行

Shan Chu, Xin Wang, Minming Li
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引用次数: 3

摘要

在链路容易中断或降级的多跳无线网络中,在保证网络连通性的同时满足性能要求是非常重要的。观察到多输入多输出(MIMO)技术在提高传输容量和可靠性方面的前景,本文首次尝试将MIMO节点作为中继来辅助无线网络中的弱链路,目的是减少中继节点的数量并提供性能保障。我们确定了MIMO中继节点辅助弱链路的具体约束条件,并利用MIMO的能力灵活选择不同的传输策略。然而,约束和灵活性使得MIMO部署问题不同于传统的单天线部署方案,更具挑战性。在此基础上,提出了MIMO中继部署问题,并给出了多项式时间逼近算法(PTAS)和分布式启发式算法。通过仿真对所提算法的性能进行了评价,并证明了算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enforcing High-Performance Operation of Multi-hop Wireless Networks with MIMO Relays
In multi-hop wireless networks where links are prone to be broken or degraded, it is important to guarantee the network connectivity as well as satisfy the performance requirements. Observing the promising features of Multiple-Input Multiple-Output (MIMO) techniques for improving the transmission capacity and reliability, in this paper, we make the very first attempt to deploy MIMO nodes as relays to assist weak links in wireless networks, with the aim of reducing the number of relay nodes and providing performance provisioning. We identify the specific constraints of MIMO relay nodes for assisting weak links, and take advantage of the MIMO ability to flexibly select among different transmission strategies. The constrains and flexibility, however, make the MIMO deployment problem different from conventional single-antenna deployment schemes and much more challenging. Based on the constraints, we formulate the MIMO relay deployment problem, and provide a polynomial-time approximation scheme (PTAS) algorithm, as well as a distributed heuristic algorithm. The performance of the proposed algorithms is evaluated through simulations and demonstrated to be very effective.
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