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Cognitive radio-based OFDM sidelobe suppression employing modulated filter banks and cancellation carriers

机译:采用调制滤波器组和抵消载波的基于认知无线电的OFDM旁瓣抑制

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In this paper, we propose a novel sidelobe suppression approach for cognitive radio systems employing orthogonal frequency division multiplexing (OFDM) transmission. OFDM is a promising solution for future overlay wireless access due to its high data rate and flexibility. However, OFDM and its variants employ sinc-type pulses in representing the symbols transmitted over all subcarriers during one time instant. Consequently, large sidelobes can occur that could potentially interfere with the signal transmissions of the neighboring legacy systems or with the transmissions of other rental users. To mitigate this source of interference, both cancellation carriers (CCs) and modulated filter banks (MFB) can be employed. In this paper, raised-cosine filter is chosen without loss of generality as the prototype filter for the modulated filter banks. The power spectrum density of the OFDM signal after employing different CC algorithms, different number of CCs and different parameters of raised-cosine filters, such as the roll off factor, are analyzed and compared. Simulation results show that this combination approach can achieve significant reduction for OFDM out-of-band radiation and the sidelobe can be suppressed down to −70 dBm.
机译:在本文中,我们为采用正交频分复用(OFDM)传输的认知无线电系统提出了一种新颖的旁瓣抑制方法。 OFDM由于其高数据速率和灵活性而成为未来覆盖无线接入的有前途的解决方案。然而,OFDM及其变体采用sinc型脉冲来表示在一个瞬间在所有子载波上传输的符号。因此,可能会出现较大的旁瓣,这可能会干扰相邻传统系统的信号传输或其他租用用户的传输。为了减轻这种干扰源,可以采用抵消载波(CC)和调制滤波器组(MFB)。在本文中,选择升余弦滤波器而不失一般性作为调制滤波器组的原型滤波器。分析并比较了采用不同CC算法,不同CC数量和升余弦滤波器的不同参数(例如滚降因子)后OFDM信号的功率谱密度。仿真结果表明,这种组合方法可以显着降低OFDM带外辐射,并且旁瓣可以抑制至-70 dBm。

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