调频解调IQ基带信号使用卡尔曼滤波器

Frank Schadt, Friedemann Mohr, Markus Holzer
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引用次数: 3

摘要

频率或相位调制的电信号出现在通信系统的多种应用中,也出现在测量装置中,如干涉测量/振动测量、测速等。常见的解调技术通常基于模拟技术(例如射频频段的锁相环),或者在混合到基带并产生IQ信号后,基于数字信号处理算法。本文将介绍并比较两种基于DSP的lQ基带信号解调算法。其中一种是基于I和Q分量所描述的角的arctan的数字推导的合成外差法。结果表明,该算法对基带信号中的噪声非常敏感。另一种更现代的算法使用卡尔曼滤波器作为两个信号的瞬时相位和频率的“最佳”估计器。卡尔曼滤波器的噪声性能得到了极大的改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FM demodulation of IQ baseband signals using Kalman filters
Frequency or phase modulated electrical signals arise in multiple applications in communication systems as well as in measurement setups such as interferometry / vibrometry, velocimetry etc. Common demodulation techniques are often based on analog techniques (e.g. a PLL in the RF band) or - after mixing into the base band and generating IQ signals - on digital signal processing algorithms. Two DSP based algorithms for the frequency demodulation of lQ baseband signals will be presented and compared in this paper. One of them is the synthetic heterodyne approach, based on the digital derivation of the arctan of the angle described by the I and Q component. It will be shown, that this algorithm is very sensitive to noise in the baseband signals. The other, more modern algorithm uses a Kalman filter as an "optimal" estimator of the instantaneous phase and frequency of the two signals. It will be shown that the Kalman filter shows a drastically improved noise performance.
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