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A Fast and Precise Blind I/Q Mismatch Compensation for Image Rejection in Direct-Conversion Receiver

机译:快速精确的I / Q盲I / Q不匹配补偿,用于直接转换接收器中的图像抑制

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In this paper, we propose a new digital blind in-phase/quadrature-phase (I/Q) mismatch compensation technique for image rejection in a direct-conversion receiver (DCR). The proposed image-rejection circuit adopts DC offset cancellation and a sign-sign least mean squares (LMS) algorithm with a unique step size adaptation both for a fast and precise I/Q mismatch estimation. In addition, several performance-optimizing design considerations related to accuracy, speed, and hardware simplicity are discussed. The implementation of the proposed circuit in an FPGA results in an image-rejection ratio (IRR) of 65 dB, which is the best performance with modulated signals, along with an adaptation time of 0.9 seconds, which is a tenfold increase in the compensation speed as compared to previously reported circuits. The proposed technique will be a promising solution in the area of image rejection to increase both the speed and accuracy of future DCRs.
机译:在本文中,我们提出了一种新的数字盲同相/正交相(I / Q)不匹配补偿技术,用于直接转换接收器(DCR)中的图像抑制。提出的图像抑制电路采用DC偏移消除和具有唯一步长自适应的符号最小均方(LMS)算法,可快速,精确地进行I / Q失配估计。此外,还讨论了与精度,速度和硬件简单性相关的几个性能优化设计注意事项。拟议中的电路在FPGA中的实现导致镜像抑制比(IRR)为65 dB,这是调制信号的最佳性能,自适应时间为0.9秒,补偿速度提高了十倍与以前报告的电路相比。所提出的技术将是在图像剔除方面提高未来DCR的速度和准确性的有前途的解决方案。

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