A space-frequency parallel ICI cancellation technique for OFDM systems

H. Yeh
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Abstract

Orthogonal frequency division multiplexing (OFDM) systems work well if the subcarriers are orthogonal to each other. However, the orthogonality among subcarriers may not exist and result in inter-carrier interference (ICI) at the receiver. This may cause by residual carrier frequency offset, time variations due to Doppler shift or phase noise. Further developing the parallel cancellation (PC) scheme to mitigate the ICI of OFDM systems, we expand this OFDM symbol-based PC scheme into a space-frequency (SF) coded system. This new simple space- frequency parallel cancellation (SFPC) scheme is a technique that combines the SF and PC schemes together. Computer simulations indicate that OFDM systems using the SFPC scheme outperform the regular PC and SF systems in slow and fast frequency selective fading channels, specifically at a high signal-noise-ratio (SNR). Furthermore, the error floor of the SFPC-OFDM system is significantly lower than that of the PC and SF systems without increasing computational load. Additionally, the SFPC scheme is a simple multiple input and multiple output (MIMO) system.
OFDM系统的空频并行ICI对消技术
正交频分复用(OFDM)系统在子载波相互正交的情况下工作良好。然而,子载波之间的正交性可能不存在,从而导致接收端的载波间干扰(ICI)。这可能是由剩余载波频率偏移、多普勒频移或相位噪声引起的时间变化引起的。进一步发展并行对消(PC)方案以减轻OFDM系统的ICI,我们将这种基于OFDM符号的PC方案扩展到空间频率(SF)编码系统。这种新的简单空频并行对消(SFPC)方案是一种将空间频并行对消和空间频并行对消相结合的技术。计算机仿真表明,采用SFPC方案的OFDM系统在慢速和快速频率选择性衰落信道中,特别是在高信噪比(SNR)下,性能优于常规的PC和SF系统。此外,在不增加计算负荷的情况下,SFPC-OFDM系统的误差层明显低于PC和SF系统。此外,SFPC方案是一个简单的多输入多输出(MIMO)系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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