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Extended Active Interference Cancellation for Sidelobe Suppression in Cognitive Radio OFDM Systems With Cyclic Prefix

机译:具有循环前缀的认知无线电OFDM系统中用于旁瓣抑制的扩展有源干扰消除

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摘要

The sidelobe of noncontiguous orthogonal frequency-division multiplexing (OFDM) signals is required to be deeply suppressed in the licensed user's band in cognitive radio (CR) systems. To this end, we propose a novel method of adding extended active interference cancellation (EAIC) signals to suppress sidelobes and to shape the spectrum of the CR-OFDM signal with a cyclic prefix (CP). For simplicity, we called the proposed scheme EAIC-CP. The key idea of the proposed EAIC-CP is to employ some cancellation signals consisting of tones spaced closer than the interval of OFDM subcarriers to cancel the sidelobes of OFDM signals. Moreover, we derive the optimal cancellation signals to minimize the total sidelobe power subject to a self-interference constraint. Numerical results show that, when the guard bandwidth is equal to one OFDM subcarrier interval, the EAIC-CP scheme offers more than a 45.0-dB sidelobe suppression with unnoticeable signal-to-noise ratio (SNR) loss at a symbol error rate (SER) from $10^{-2}$ to $10^{-3}$ for 64 quadratic-amplitude modulation (64QAM). Moreover, the EAIC-CP scheme can achieve high spectrum efficiency with low implementation complexity.
机译:在认知无线电(CR)系统中,要求在许可用户的频带中深度抑制非连续正交频分复用(OFDM)信号的旁瓣。为此,我们提出了一种添加扩展的有源干扰消除(EAIC)信号以抑制旁瓣并使用循环前缀(CP)整形CR-OFDM信号频谱的新颖方法。为简单起见,我们将提议的方案称为EAIC-CP。所提出的EAIC-CP的关键思想是采用一些音调组成的抵消信号,这些音调的间隔比OFDM副载波的间隔更近,以抵消OFDM信号的旁瓣。此外,我们推导了最佳消除信号,以使受到自干扰约束的总旁瓣功率最小。数值结果表明,当保护带宽等于一个OFDM子载波间隔时,EAIC-CP方案可提供超过45.0 dB的旁瓣抑制,并且在符号错误率(SER)下信噪比(SNR)损失不明显)从$ 10 ^ {-2} $到$ 10 ^ {-3} $适用于64个二次振幅调制(64QAM)。此外,EAIC-CP方案可以实现高频谱效率,并且实现复杂度低。

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