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Variable bandwidth spectrum access for secondary user in cognitive radio networks

机译:认知无线电网络中辅助用户的可变带宽频谱访问

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In cognitive radio networks (CRNs), how to efficiently take advantage of vacant frequency bands for secondary users (SUs) has become a key to improve quality of service (QoS). Detection error has certain impacts on spectrum access, leading to overlook vacant frequency bands or occur the collision between primary users(PUs) and SUs. Since sensing mistake is inevitable, an optimal dynamic access scheme should be based on imperfect detection outcome. Therefore we propose a variable bandwidth spectrum access scheme with imperfect spectrum sensing. In this scheme, SUs can access different amount of frequency bands by detecting spectrum resources. As soon as PUs reclaim the frequency bands, SUs adjust own frequency bands according to the state of spectrum resources, meanwhile renewing their service quality level. Considering the impact of detection error on CRNs performance, this scheme is based on imperfect sensing and modeled by three-dimension Continuous-Time Markov Chain (3D-CTMC). We give the expression of performance metrics evaluating QoS of CRNs and use QBD theory to gain the solution of steady state probability. Theory analysis and simulation experiments show that the proposed scheme efficiently improves QoS of CRNs with an acceptable degradation of SUs'service quality level, the degradation has no influence on the normal transmission of SUs.
机译:在认知无线电网络(CRN)中,如何有效利用次要用户(SU)的空闲频带已成为提高服务质量(QoS)的关键。检测错误会对频谱访问产生一定影响,导致忽略空闲频段或发生主要用户(PU)与SU之间的冲突。由于不可避免地会出现错误,因此最佳的动态访问方案应基于不完善的检测结果。因此,我们提出了一种具有不完善频谱感知的可变带宽频谱接入方案。在这种方案中,SU可以通过检测频谱资源来访问不同数量的频带。 PU收回频段后,SU会根据频谱资源的状态调整自己的频段,同时更新其服务质量水平。考虑到检测误差对CRNs性能的影响,该方案基于不完善的传感,并通过三维连续时间马尔可夫链(3D-CTMC)进行建模。我们给出了用于评估CRN的QoS的性能指标的表达式,并使用QBD理论来获得稳态概率的解决方案。理论分析和仿真实验表明,该方案有效改善了CRN的QoS,且SU的服务质量水平得到了可接受的降低,且该降低对SU的正常传输没有影响。

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