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Joint Adaptive Compensation of Transmitter and Receiver IQ Imbalance Under Carrier Frequency Offset in OFDM-Based Systems

机译:OFDM系统中载波频率偏移下发射机与接收机IQ失衡的联合自适应补偿

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摘要

Zero-intermediate frequency (IF)-based orthogonal frequency division multiplexing (OFDM) transmitters and receivers are gaining a lot of interest because of their potential to enable low-cost terminals. However, such systems suffer from front-end impairments such as in-phase/quadrature-phase (IQ) imbalance which may have a huge impact on the performance. Moreover, since OFDM is very sensitive to a carrier frequency offset, this distortion needs to be taken into account in the derivation and analysis of any IQ imbalance estimation/compensation scheme. In this paper, the effect of both transmitter and receiver IQ imbalance under carrier frequency offset in an OFDM system is studied and an algorithm is developed to compensate for such distortions in the digital domain. The algorithm involved is a very efficient post-FFT adaptive equalization which is shown to lead to near ideal compensation.
机译:基于零中频(IF)的正交频分多路复用(OFDM)发射器和接收器因其具有实现低成本终端的潜力而备受关注。但是,此类系统会遭受前端损害,例如同相/正交相位(IQ)不平衡,这可能会对性能产生巨大影响。此外,由于OFDM对载波频率偏移非常敏感,因此在推导和分析任何IQ不平衡估计/补偿方案时都需要考虑这种失真。在本文中,研究了OFDM系统中在载波频率偏移下发射器和接收器IQ不平衡的影响,并开发了一种算法来补偿数字域中的此类失真。所涉及的算法是非常有效的FFT后自适应均衡,它显示出接近理想的补偿。

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