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Compensation Schemes and Performance Analysis of IQ Imbalances in OFDM Receivers

机译:OFDM接收机IQ不平衡的补偿方案和性能分析。

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The implementation of orthogonal frequency division multiplexing (OFDM)-based physical layers suffers from the effect of In-phase and Quadrature-phase (IQ) imbalances in the front-end analog processing. The IQ imbalances can severely limit the achievable operating signal-to-noise ratio (SNR) at the receiver and, consequently, the supported constellation sizes and data rates. In this paper, the effect of IQ imbalances on OFDM receivers is studied, and system-level algorithms to compensate for the distortions are proposed. The algorithms include post-fast Fourier transform (FFT) least-squares and least mean squares (LMS) equalization, as well as pre-FFT correction using adaptive channel/distortion estimation and special pilot tones to enable accurate and fast training. Bounds on the achievable performance of the compensation algorithms are derived and evaluated as a function of the physical distortion parameters. A motivation is included for the physical causes of IQ imbalances and for the implications of the approach presented in this paper on designing and implementing wireless transceivers.
机译:基于正交频分复用(OFDM)的物理层的实现受到前端模拟处理中同相和正交(IQ)不平衡的影响。 IQ不平衡会严重限制接收机处可实现的工作信噪比(SNR),因此会限制所支持的星座图大小和数据速率。本文研究了IQ失衡对OFDM接收机的影响,并提出了系统级的失真补偿算法。该算法包括快速傅里叶变换(FFT)最小二乘和最小均方(LMS)均衡,以及使用自适应信道/失真估计和特殊导频音的FFT预校正,以实现准确,快速的训练。导出并根据物理失真参数评估补偿算法可达到的性能界限。动机包括IQ失衡的物理原因以及本文介绍的方法在设计和实现无线收发器上的含义。

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