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Blind Compensation of I/Q Impairments in Wireless Transceivers

机译:无线收发器中I / Q损伤的盲补偿

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摘要

The majority of techniques that deal with the mitigation of in-phase and quadrature-phase (I/Q) imbalance at the transmitter (pre-compensation) require long training sequences, reducing the throughput of the system. These techniques also require a feedback path, which adds more complexity and cost to the transmitter architecture. Blind estimation techniques are attractive for avoiding the use of long training sequences. In this paper, we propose a blind frequency-independent I/Q imbalance compensation method based on the maximum likelihood (ML) estimation of the imbalance parameters of a transceiver. A closed-form joint probability density function (PDF) for the imbalanced I and Q signals is derived and validated. ML estimation is then used to estimate the imbalance parameters using the derived joint PDF of the output I and Q signals. Various figures of merit have been used to evaluate the efficacy of the proposed approach using extensive computer simulations and measurements. Additionally, the bit error rate curves show the effectiveness of the proposed method in the presence of the wireless channel and Additive White Gaussian Noise. Real-world experimental results show an image rejection of greater than 30 dB as compared to the uncompensated system. This method has also been found to be robust in the presence of practical system impairments, such as time and phase delay mismatches.
机译:缓解发射机内同相和正交相(I / Q)不平衡(预补偿)的大多数技术都需要很长的训练序列,从而降低了系统的吞吐量。这些技术还需要反馈路径,这会增加发射机架构的复杂性和成本。盲估计技术对于避免使用长训练序列很有吸引力。在本文中,我们基于收发器失衡参数的最大似然(ML)估计,提出了一种与频率无关的I / Q失衡补偿方法。导出并验证了不平衡的I和Q信号的闭合形式联合概率密度函数(PDF)。然后,使用ML估计,通过导出的I和Q信号的联合PDF估计不平衡参数。使用广泛的计算机模拟和测量,已使用各种优点来评估所提出方法的有效性。此外,误码率曲线显示了该方法在无线信道和加性高斯白噪声存在下的有效性。实际的实验结果表明,与未补偿系统相比,镜像抑制大于30 dB。还已经发现,在存在实际系统缺陷(例如时间和相位延迟不匹配)的情况下,该方法是可靠的。

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