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Frequency-selective I/Q imbalance compensation for OFDM transmitters using online frequency-domain adaptive predistortion

机译:使用在线频域自适应预失真的OFDM发射机的频率选择I / Q不平衡补偿

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摘要

I/Q imbalance in practical direct-conversion transmitters is a major impairment in OFDM systems. The demand for transmit OFDM signals with low error vector magnitude (EVM) while using increasing bandwidths illuminate the need for robust and high performance frequency-selective I/Q imbalance compensation in OFDM direct-conversion transmitters. Inspired by the 2008 work of Zou, Valkama, and Renfors, this paper extends an approach for compensating frequency-selective I/Q imbalance using a frequency-domain adaptive predistortion scheme and loopback signal path from RF to baseband. The proposed extended method is able to operate fully online (i.e., in normal transmission mode) and recursively using an operational OFDM signal and does not require a special calibration signal or calibration mode. The online and recursive nature of the proposed extended algorithm allows for seamless tracking of any dynamic characteristics associated with I/Q imbalance and simplifies transmitter operation. For the specific frequency-selective I/Q imbalance case considered, simulations show a significant improvement in the image rejection ratio (IRR) over the signal band, showing performance on par with that reported in the cited 2008 work which used a non recursive version of the method based on offline operation, a calibration mode, and a customized pilot signal. Several aspects of the approach are tunable for any given application, allowing the system designer to balance achieved IRR against convergence time, tracking speed, and computational complexity.
机译:实际的直接转换发射机中的I / Q不平衡是OFDM系统的主要障碍。在使用增加的带宽的同时,对具有低误差矢量幅度(EVM)的OFDM信号进行传输的需求阐明了对OFDM直接转换发射机中鲁棒且高性能的频率选择性I / Q不平衡补偿的需求。受Zou,Valkama和Renfors在2008年工作的启发,本文扩展了一种使用频域自适应预失真方案和从RF到基带的环回信号路径来补偿频率选择性I / Q不平衡的方法。提出的扩展方法能够完全在线(即,在正常传输模式下)操作,并且使用可操作的OFDM信号来递归地操作,并且不需要特殊的校准信号或校准模式。所提出的扩展算法的在线和递归性质允许无缝跟踪与I / Q不平衡相关的任何动态特性,并简化了发射机的操作。对于考虑的特定频率选择性I / Q不平衡情况,仿真显示了整个信号频带内的镜像抑制比(IRR)的显着改善,其性能与引用的2008年工作中使用的非递归版本的报告相当。该方法基于离线操作,校准模式和定制的导频信号。该方法的几个方面对于任何给定的应用都是可调的,从而允许系统设计人员在已实现的IRR与收敛时间,跟踪速度和计算复杂性之间取得平衡。

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