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Suppressing the out-of-band power radiation in multi-carrier systems: A comparative study

机译:抑制多载波系统中的带外功率辐射:一项比较研究

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摘要

As of today, orthogonal frequency-division multiplexing (OFDM) has been the dominant technique in broadband transmission systems. However, for the application in cognitive radios, the sidelobes of rectangularly pulsed OFDM signals must be well suppressed to satisfy the rigorous spectral masks. In this context, filter-bank based multi-carrier (FBMC) transmission, which allows designing prototype filters for signal pulse shaping, is considered to be more effective. In this article, different sidelobe suppression schemes for OFDM and pulse-shaped FBMC are comparatively investigated with respect to their out-of-band power radiation and their demand in computational complexity. Our results reveal that FBMC, thanks to the excellent time-frequency localization of the pulse shape, allows for a superior isolation of the transmit signal in frequency, enabling to achieve the minimal out-of-band power leakage for the operation in both contiguous and non-contiguous spectrum. Moreover, the additional complexity required for FBMC compared to the other schemes is very moderate.
机译:迄今为止,正交频分复用(OFDM)已成为宽带传输系统中的主要技术。然而,对于认知无线电中的应用,必须很好地抑制矩形脉冲OFDM信号的旁瓣以满足严格的频谱掩模。在这种情况下,基于滤波器组的多载波(FBMC)传输被认为更为有效,该传输允许设计用于信号脉冲整形的原型滤波器。在本文中,针对OFDM和脉冲形FBMC的不同旁瓣抑制方案,对它们的带外功率辐射及其对计算复杂性的需求进行了比较研究。我们的结果表明,由于脉冲形状具有出色的时频局部性,FBMC可以对频率上的发射信号进行出色的隔离,从而可以在连续和连续工作中实现最小的带外功耗非连续频谱。而且,与其他方案相比,FBMC所需的额外复杂度非常适中。

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