Blind Moment Estimation Techniques for I/Q Imbalance Compensation in Quadrature Receivers

L. Anttila, M. Valkama, M. Renfors
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引用次数: 47

Abstract

When targeting receiver integrability and flexibility, the choice of the front-end architecture is in key position. Instead of the traditional superheterodyne architecture, more recent I/Q or quadrature receiver front-ends are receiving increasingly more interest. One crucial aspect in quadrature receiver front-ends is the amplitude and phase matching of the analog I and Q signal branches. I/Q mismatches result in incomplete image signal or mirror frequency attenuation which must be enhanced using additional analog or digital signal processing. This paper presents and analyzes a novel DSP-based blind (non-data-aided) technique for I/Q imbalance compensation, utilizing a property of the ideal baseband equivalent called circularity. The weights of the compensator are computed directly from the estimates of the second-order moments of the mismatched baseband equivalent received signal. This algorithm is further simplified, with minimal loss in performance, yielding an extraordinarily simple yet effective compensation technique which ideally triples the dB value of the analog front-end image rejection ratio. The algorithms are applicable to any I/Q receiver structure, whether single-channel or multi-channel, and are in fact totally independent of any specific structure or characteristic (other than circularity) of the ideal baseband equivalent signal
正交接收机I/Q不平衡补偿的盲矩估计技术
在以接收机的可集成性和灵活性为目标时,前端架构的选择至关重要。代替传统的超外差架构,最近的I/Q或正交接收器前端正受到越来越多的关注。正交接收机前端的一个关键方面是模拟信号I和Q分支的幅度和相位匹配。I/Q不匹配导致图像信号不完整或镜像频率衰减,必须使用额外的模拟或数字信号处理来增强。本文提出并分析了一种新的基于dsp的盲(非数据辅助)I/Q不平衡补偿技术,该技术利用了理想基带等效的圆度特性。补偿器的权值直接由接收到的不匹配基带等效信号的二阶矩估计来计算。该算法进一步简化,性能损失最小,产生非常简单而有效的补偿技术,理想地使模拟前端图像抑制比的dB值增加三倍。这些算法适用于任何I/Q接收器结构,无论是单通道还是多通道,并且实际上完全独立于理想基带等效信号的任何特定结构或特性(圆度除外)
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