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Performance of cognitive stop-and-wait hybrid automatic repeat request in the face of imperfect sensing

机译:面对不完全感知的认知停止等待混合自动重复请求的表现

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摘要

The cognitive radio (CR) paradigm has the potential of improving the exploitation of the electromagnetic spectrum by detecting instantaneously unoccupied spectrum slots allocated to primary users (PUs). In order to support the process of spectrum reuse, we consider a CR scheme, which senses and opportunistically accesses a PU's spectrum for communication between a pair of nodes relying on the stop-and-wait hybrid automatic repeat request (SW-HARQ) protocol. This arrangement is represented by the cognitive SW-HARQ (CSW-HARQ), where the availability/unavailability of the PU's channel is modeled as a two-state Markov chain having OFF and ON states, respectively. Once the cognitive user (CU) finds that the PU's channel is available (i.e., in the OFF state), the CU transmits data over the PU channel's spectrum, while relying on the principles of SW-HARQ. We investigate both the throughput and the delay of CSW-HARQ, with a special emphasis on the impact of the various system parameters involved in the scenarios of both perfect and imperfect spectrum sensing. Furthermore, we analyze both the throughput as well as the average packet delay and end-to-end packet delay of the CSW-HARQ system. We propose a pair of analytical approaches: 1) the probability-based and 2) the discrete time Markov chain-based. Closed-form expressions are derived for both the throughput and the delay under the perfect and imperfect sensing environments that are validated by simulation. We demonstrate that the activity of PUs, the transmission reliability of the CU, and the sensing environment have a significant impact on both the throughput and the delay of the CR system.
机译:认知无线电(CR)范例具有通过检测分配给主要用户(PU)的瞬时未占用频谱时隙来改善电磁频谱利用的潜力。为了支持频谱重用的过程,我们考虑了一种CR方案,该方案依靠停止和等待混合自动重发请求(SW-HARQ)协议来感测和机会性地访问PU的频谱以在一对节点之间进行通信。这种安排由认知SW-HARQ(CSW-HARQ)表示,其中PU通道的可用性/不可用性分别建模为具有OFF和ON状态的两状态Markov链。一旦认知用户(CU)发现PU的信道可用(即处于OFF状态),则CU依靠SW-HARQ的原理通过PU信道的频谱发送数据。我们研究了CSW-HARQ的吞吐量和延迟,并特别强调了在完美和不完美频谱感测场景中涉及的各种系统参数的影响。此外,我们分析了CSW-HARQ系统的吞吐量以及平均数据包延迟和端到端数据包延迟。我们提出了两种分析方法:1)基于概率的方法; 2)基于离散时间马尔可夫链的方法。通过仿真验证,在完美和不完美的传感环境下,可以为吞吐量和延迟导出闭合形式的表达式。我们证明了PU的活动,CU的传输可靠性以及传感环境对CR系统的吞吐量和延迟都具有重大影响。

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