Transmitted Reference-Based Spectrum Sensing in IEEE 802.22 WRAN Networks

Shaoyi Xu, Yanlei Shang, Haiming Wang
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Abstract

Cognitive radio (CR) is an effective technology for flexible utility of radio spectrum and has received increasing attention so far. To ensure reliable spectrum sensing, quiet periods (QPs) are allocated during which all secondary users cease transmission and perform spectrum sensing. Such that, regular transmission will be interrupted periodically and the system quality of service (QoS) could be decreased to some extent. In this paper, a spectrum sensing scheme which is based on the transmitted reference (TR) technique is proposed where a secondary signal is transmitted in the first half frame and is reversed to retransmit in the second half one. For the sensing CR user, the first half received signals are delayed and added to the second half ones. By doing so, the strong interference from the other CR user can be alleviated without affecting the spectrum detection performance. Simulation results show that the proposed scheme is very effective and a nearly same detection performance can be obtained comparing with the method when a long enough QP is used.
IEEE 802.22 WRAN网络中基于传输参考的频谱感知
认知无线电(CR)是一种灵活利用无线电频谱的有效技术,目前受到越来越多的关注。为了保证频谱感知的可靠性,系统会分配qp (quiet period),在此期间,所有从用户停止传输,进行频谱感知。这将导致常规传输周期性中断,并在一定程度上降低系统服务质量(QoS)。本文提出了一种基于传输参考(TR)技术的频谱感知方案,该方案在前半帧中发送二次信号,在后半帧中反转重传。对于感知CR用户,接收到的前一半信号被延迟,并添加到后一半信号中。这样可以在不影响频谱检测性能的前提下,缓解来自其他CR用户的强干扰。仿真结果表明,当使用足够长的QP时,所提出的方法是非常有效的,可以获得与传统方法几乎相同的检测性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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