基于自适应阈值的OFDM快速频谱检测

Mengbo Zhang, Lunwen Wang, Lei Ding
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引用次数: 2

摘要

高效、准确的频谱感知是认知无线电网络的必要组成部分。针对非同步OFDM信号在低信噪比条件下频谱感知性能差的问题,提出了一种简单高效的频谱感知技术。通过对传统的基于循环平稳的OFDM信号频谱感知技术进行分解,分离出相关函数的实部和虚部。分别从实部和虚部分析了OFDM信号的二阶环站,排除了虚部相关函数对信号的干扰。根据估计的噪声功率和虚警概率设置相应的自适应阈值,通过实部相关函数完成OFDM频谱感知。仿真结果表明,与现有方法相比,所提算法能有效降低计算复杂度,提高感知效率,实现OFDM频谱感知的快速、准确。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A fast spectrum sensing for OFDM based on adaptive thresholding
Efficient and accurate spectrum sensing is a necessary part in cognitive radio networks. A simple and efficient spectrum sensing technique is proposed to solve the bad performance of spectrum sensing in non synchronous OFDM signals with low SNR regimes. Through the decomposition of the traditional OFDM signal spectrum sensing technology based on cyclostationarity, the real part and the imaginary part of the correlation function are separated. The two order cyclostation of OFDM signal is analyzed from the real part and imaginary part respectively, and the interference caused by imaginary part correlation function is excluded. According to the estimated noise power and false alarm probability to set the corresponding adaptive threshold to complete the OFDM spectrum sensing by the real part correlation function. The simulation results show that compared with the existing methods the proposed algorithm can effectively reduce the computational complexity and improve the perceptual efficiency, and can realize the fast and accurate of OFDM spectrum sensing.
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