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Performance of Cognitive Hybrid Automatic Repeat reQuest: Stop-and-Wait

机译:认知混合自动重复请求的性能:停止并等待

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Detecting spectrum holes and efficiently accessing them are the two basic functions that enable a cognitive radio (CR) to make use of the licensed spectrums of a primary radio (PR). In this paper, we consider a CR scheme, which opportunistically accesses a PR channel for communication between a pair of nodes based on the stop-and-wait hybrid automatic repeat request (SW-HARQ). Hence, it is referred to as the cognitive SW-HARQ (CSW-HARQ) arrangement. In our CSW-HARQ system, the PR channel is modelled as a two-state Markov chain having `On' and `Off' states. The CR may only access the PR channel in its `Off' state. In this paper, we analyze both the throughput and delay performance of the CSW-HARQ system, for which a range of closed-form formulas are derived that are also validated by simulation results. Our performance results show that both the activities of PR users and the reliability of the CR channel have a substantial impact on the achievable performance of the CR system.
机译:检测频谱孔并有效访问它们是使认知无线电(CR)能够利用主无线电(PR)许可频谱的两个基本功能。在本文中,我们考虑一种CR方案,该方案基于停止等待混合自动重发请求(SW-HARQ)机会性地访问PR通道以在一对节点之间进行通信。因此,它被称为认知SW-HARQ(CSW-HARQ)安排。在我们的CSW-HARQ系统中,PR通道被建模为具有“开”和“关”状态的两状态马尔可夫链。 CR只能在“关闭”状态下访问PR通道。在本文中,我们分析了CSW-HARQ系统的吞吐量和延迟性能,为此得出了一系列封闭形式的公式,这些公式也通过仿真结果进行了验证。我们的性能结果表明,PR用户的活动和CR通道的可靠性都对CR系统可实现的性能产生重大影响。

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