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Xing-zone bridge construction for multi-hop cognitive radio networks with channel bonding

机译:具有信道绑定的多跳认知无线电网络的星区桥构造

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Cognitive radio is an efficient technique to relieve the tense of wireless spectrum scarcity by allowing unlicensed secondary users (SUs) to access the licensed band opportunistically without causing interference to primary users (PUs). Although Federal Communications Commission (FCC) recently ruled that the data of PU activity schedule is accessible to SUs 24 hours ahead, which relieves SUs from heavy sensing or interruption by sudden PU activity, however, multi-hop wireless cognitive radio networks (MWCRN) suffers a unique problem caused by the fact that the spectrum resources are not unified in different areas affected by different PUs. In other words, an SU origin-destination (OD) pair transmission would meet the bottleneck in bandwidth when crossing areas with different available spectrum resources. To solve this problem, we formulate an optimization problem to maximize the number of connection bridges to cross different areas. Moreover, we introduce channel bonding technique into the MWCRN for network performance improvement. We also propose a distributed algorithm for practical application. Simulation results verifies the better performance of our proposed scheme.
机译:认知无线电是一种有效的技术,它可以通过允许未经许可的次要用户(SU)机会性地访问许可频段而不会对主要用户(PU)造成干扰,从而缓解无线频谱短缺的紧张状况。尽管联邦通信委员会(FCC)最近裁定,SU可以提前24小时访问PU活动时间表的数据,这可以缓解SU免受PU突然活动引起的严重感知或干扰的影响,但是,多跳无线认知无线电网络(MWCRN)受到了影响频谱资源在受不同PU影响的不同区域中没有统一的事实而引起的一个独特问题。换句话说,当跨越具有不同可用频谱资源的区域时,SU起点-目的地(OD)对传输将满足带宽瓶颈。为了解决这个问题,我们制定了一个优化问题,以最大化跨不同区域的连接桥的数量。此外,我们在MWCRN中引入了信道绑定技术,以提高网络性能。我们还提出了一种实用的分布式算法。仿真结果验证了所提出方案的更好性能。

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