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Multiple Doppler shifts compensation and ICI elimination by beamforming in high-mobility OFDM systems

机译:在高移动性OFDM系统中通过波束成形实现多普勒频移补偿和ICI消除

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摘要

Although OFDM is an effective way to mitigate the multipath spread of the wireless channels by a simple equalization, it is very sensitive to Doppler effect. Doppler spreading due to the mobility of communication terminals destroys the orthogonality among the subcarriers, and results in intercarrier interference, which degrades the system performance. In this paper, we employ array beamforming and interference suppression to compensate multiple Doppler shifts in high-speed OFDM systems. The proposed method uses uniform circular array to separate different paths with unique Doppler shift, and then correct Doppler offsets in different paths respectively. This scheme not only eases channel estimation and equalization but also utilizes the multipath characteristics of wireless channel and provides Doppler diversity gains. Simulation results show that when sufficient elements were used, the proposed scheme can effectively combat the BER error floor in high-mobility scenario and have great performance enhancement over traditional methods.
机译:尽管OFDM是通过简单的均衡减轻无线信道多径扩展的有效方法,但它对多普勒效应非常敏感。由于通信终端的移动性而引起的多普勒扩展破坏了子载波之间的正交性,并导致了载波间干扰,从而降低了系统性能。在本文中,我们采用阵列波束成形和干扰抑制来补偿高速OFDM系统中的多普勒频移。所提出的方法使用统一的圆形阵列来分离具有唯一多普勒频移的不同路径,然后分别校正不同路径中的多普勒偏移。该方案不仅简化了信道估计和均衡,而且利用了无线信道的多径特性,并提供了多普勒分集增益。仿真结果表明,在使用足够多的元素的情况下,所提出的方案可以有效地解决高移动性场景下的误码率底限,并且与传统方法相比,具有很大的性能提升。

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