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Opportunistic Spectrum Sharing with Quality-of-Service Support in Cognitive Radio Networks

机译:认知无线电网络中的机会频谱共享和服务质量支持

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摘要

Opportunistic spectrum sharing (OSS) has become an effective method to fully utilize the scarce spectrum resources. In this paper, we propose an OSS scheme with quality-of-service (QoS) support for secondary users (SUs) in cognitive radio networks (CRNs). SUs are classified into the SUs with real-time traffic (RT-SUs) and the SUs with non-real-time traffic (NRT-SUs). The RT-SUs have higher terminated-priority than NRT-SUs to guarantee the QoS requirements of RT-SUs. If a primary user (PU) tries to access the channel used by an RT-SU or a NRT-SU, the RT-SU can be terminated only when there is no idle channel, while the NRT-SU has to stop its transmission. We also use a random probability function to control the channel access of the SUs so that second users can achieve different successful access probability according to their payment. In addition, we use a six-dimensional Markov approach to derive system performance in terms of forced termination probability, blocking probability and system throughput for RT-SUs and NRT-SUs with different access-priorities. Numerical results show that the proposed scheme can meet the QoS requirements of different SUs in the presence of guaranteeing the communication quality of PUs and achieve great throughput improvement compared to typical spectrum sharing schemes.
机译:机会频谱共享(OSS)已成为充分利用稀缺频谱资源的有效方法。在本文中,我们提出了一种在认知无线电网络(CRN)中为次级用户(SU)提供服务质量(QoS)支持的OSS方案。 SU分为实时流量(RT-SU)和非实时流量(NRT-SU)。为了确保RT-SU的QoS要求,RT-SU的终止优先级高于NRT-SU。如果主要用户(PU)尝试访问RT-SU或NRT-SU使用的信道,则仅当没有空闲信道时才能终止RT-SU,而NRT-SU必须停止其传输。我们还使用随机概率函数来控制SU的信道访问,以便第二个用户可以根据其付款获得不同的成功访问概率。此外,我们使用六维马尔可夫方法从具有不同访问优先级的RT-SU和NRT-SU的强制终止概率,阻塞概率和系统吞吐量方面得出系统性能。数值结果表明,与典型的频谱共享方案相比,该方案在保证PU通信质量的前提下,可以满足不同SU的QoS要求。

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