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A Hybrid Underlay/Overlay Transmission Mode for Cognitive Radio Networks with Statistical Quality-of-Service Provisioning

机译:具有统计服务质量配置的认知无线电网络的混合底/上传输模式

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摘要

In order to achieve better statistical Quality-of-Service (QoS) provisioning for cognitive radio networks (CRN), in this paper, we develop a hybrid underlay/overlay transmission mode for CRNs. Specifically, by applying the theory of effective capacity and taking PN's activity statistics into consideration, we first analyze the maximum achievable throughput of the CRN under two dominant transmission modes, namely underlay and overlay, respectively, and provide efficient algorithms to derive optimal transmission strategies for the two modes. Following the analyses, we then propose a hybrid underlay/overlay transmission mode, through which the cognitive users' QoS requirements can be better guaranteed and network throughput can be further improved. Moreover, we analyze the optimal transmission strategies for both underlay and overlay modes under two limiting cases. Analyses indicate that 1) for the loose QoS requirement, optimal transmission strategies for both underlay and overlay modes become the water-filling algorithm; and 2) for the stringent QoS requirement, the cognitive user will transmit with constant rate. Furthermore, the impact of imperfect channel estimations on our proposed transmission mode is discussed. Simulation results are provided to demonstrate the impacts of delay QoS requirements and PN's activity statistics on maximizing the delay-constrained throughput for both underlay and overlay modes and verify the effectiveness of our proposed transmission mode. Moreover, for the overlay mode, we observe that 1) a unique optimal sensing time exists under the given QoS constraint; and 2) the optimal sensing time surprisingly increases as the QoS constraint gets more stringent.
机译:为了实现针对认知无线电网络(CRN)的更好的统计服务质量(QoS)设置,在本文中,我们开发了一种针对CRN的混合底层/上层传输模式。具体而言,通过应用有效容量理论并考虑PN的活动统计信息,我们首先分析了CRN在两种主要传输模式下分别可实现的最大传输量,即底层传输和重叠传输,并提供了有效的算法来得出最优的传输策略。两种模式。经过分析,然后我们提出了一种混合的底层/上层传输模式,通过该模式可以更好地保证认知用户的QoS要求,并可以进一步提高网络吞吐量。此外,我们分析了两种极限情况下下层和上层模式的最佳传输策略。分析表明:1)对于宽松的QoS要求,针对底层和覆盖模式的最佳传输策略均成为注水算法; 2)对于严格的QoS要求,认知用户将以恒定速率进行传输。此外,讨论了不完美的信道估计对我们提出的传输模式的影响。提供的仿真结果证明了延迟QoS要求和PN的活动统计信息对最大化底层和覆盖模式的延迟约束吞吐量的影响,并验证了我们提出的传输模式的有效性。此外,对于覆盖模式,我们观察到:1)在给定的QoS约束下,存在唯一的最佳检测时间; 2)随着QoS约束变得更加严格,最佳检测时间令人惊讶地增加。

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