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Energy-efficient framework for throughput enhancement of cognitive radio network

机译:认知无线电网络的吞吐量增强节能框架

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摘要

Recently, cognitive radio (CR) has evolved as a next-generation communication technology that has the potential to use the radio frequency (RF) spectrum in most efficient manner as compared to the other existing cellular communication technologies. The performance of CR system largely depends upon the accuracy of the sensing results. However, the sensing ambiguities such as false alarm and miss detection cause spectrum underutilization and severe interference to the primary user (PU), respectively. In this paper, both issues are addressed by modifying the conventional frame structure by introducing two sensing slots along with a transmission slot to overcome sensing ambiguities. For the targeted probability of detection, the first sensing slot is kept small and fixed, and sensing results are stored in a flag bit up to that duration. The second sensing slot (optional) is used whenever the flag bit status varies in the current frame from the previous frame. Considering sensing throughput trade-off issue of CR, the second sensing slot is optimized to enhance the effective throughput and energy efficiency of the secondary communication system. The simulation results are presented to validate the effectiveness of the proposed scheme with a modified frame structure, which is capable to achieve 65% higher energy efficiency than the conventional scheme when PU is present in a channel, that is, P(H-1) = 1.
机译:最近,认知无线电(CR)已经发展为下一代通信技术,其具有与其他现有的蜂窝通信技术相比以最有效的方式使用射频(RF)频谱。 CR系统的性能在很大程度上取决于传感结果的准确性。然而,诸如伪警报和错过检测的传感歧义,分别对主要用户(PU)的频谱未充分利用和严重干扰。在本文中,通过通过引入两个传感器槽以及传输槽来解决传统框架结构来解决这两个问题,以克服感测歧义。对于检测的目标概率,第一感测槽保持小且固定,并且感测结果存储在标志位上至该持续时间。每当来自前一帧的当前帧中的标志位状态变化时,使用第二传感器(可选)。考虑到CR的传感通量权衡问题,第二种传感器经过优化,以提高二级通信系统的有效吞吐量和能量效率。提出了模拟结果以验证所提出的方案的有效性,该方法具有改进的帧结构,该结构能够达到比传统方案达到65%,当PU存在于通道中时,即P(H-1) = 1。

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