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Performance of Cognitive Radio Sensor Networks Using Hybrid Automatic Repeat ReQuest: Stop-and-Wait

机译:使用混合自动重复请求的认知无线电传感器网络的性能:停止并等待

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摘要

The enormous developments in the field of wireless communication technologies have made the unlicensed spectrum bands crowded, resulting uncontrolled interference to the traditional wireless network applications. On the other hand, licensed spectrum bands are almost completely allocated to the licensed users also known as Primary users (PUs). This dilemma became a blackhole for the upcoming innovative wireless network applications. To mitigate this problem, the cognitive radio (CR) concept emerges as a promising solution for reducing the spectrum scarcity issue. The CR network is a low cost solution for efficient utilization of the spectrum by allowing secondary users (SUs) to exploit the unoccupied licensed spectrum. In this paper, we model the PU’s utilization activity by a two-state Discrete-Time-Markov Chain (DTMC) (i.e., Free and busy states), for identifying the temporarily unoccupied spectrum bands,. Furthermore, we propose a Cognitive Radio Sense-and-Wait assisted HARQ scheme, which enables the Cluster Head (CH) to perform sensing operation for the sake of determining the PU’s activity. Once the channel is found in free state, the CH advertise control signals to the member nodes for data transmission relying on Stop-and-Wait Hybrid- Automatic Repeat-Request (SW-HARQ). By contrast, when the channel is occupied by the PU, the CH waits and start sensing again. Additionally, the proposed CRSW assisted HARQ scheme is analytical modeled, based on which the closed-form expressions are derived both for average block delay and throughput. Finally, the correctness of the closed-form expressions are confirmed by the simulation results. It is also clear from the performance results that the level of PU utilization and the reliability of the PU channel have great influence on the delay and throughput of CRSW assisted HARQ model.
机译:无线通信技术领域的巨大发展使无执照频段变得拥挤,从而导致对传统无线网络应用的不受控制的干扰。另一方面,许可的频谱频带几乎完全分配给许可的用户,也称为主要用户(PU)。对于即将到来的创新无线网络应用来说,这个难题成为了一个黑洞。为了缓解此问题,认知无线电(CR)概念应运而生,可以减少频谱短缺问题。通过允许次要用户(SU)利用未占用的许可频谱,CR网络是一种有效利用频谱的低成本解决方案。在本文中,我们通过两个状态的离散时间马尔可夫链(DTMC)(即忙/闲状态)对PU的利用活动进行建模,以识别临时未占用的频段。此外,我们提出了一种认知无线电感官等待辅助HARQ方案,该方案使簇头(CH)能够执行传感操作,从而确定PU的活动。一旦发现信道处于空闲状态,CH就会根据停止等待混合自动重发请求(SW-HARQ)将控制信号通告给成员节点以进行数据传输。相反,当信道被PU占用时,CH等待并再次开始检测。此外,对拟议的CRSW辅助HARQ方案进行了分析建模,基于该模型导出了平均块延迟和吞吐量的闭式表达式。最后,仿真结果证实了封闭式表达式的正确性。从性能结果还可以清楚地看出,PU利用率的水平和PU信道的可靠性对CRSW辅助HARQ模型的延迟和吞吐量具有很大的影响。

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