Extraction of the inphase and quadrature components from oversampled bandpass signals using multistage decimator with BPFs and its performance evaluation

T. Sekiguchi, T. Kirimoto
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Abstract

We present a method of extracting the digital inphase (I) and quadrature (Q) components from oversampled bandpass signals using narrow-band bandpass Hilbert transformers. Down-conversion of the digitized IF signals to baseband and reduction of the quantization noise are accomplished by the multistage decimator with the complex coefficient bandpass digital filters (BPFs), of which the bandpass Hilbert transformers are composed. Most of the complex coefficient BPFs in the multistage decimator can be replaced with the lowpass filters (LPFs) under some conditions, which reduces computational burden. We evaluate the signal to quantization noise ratio of the I and Q components for the sinusoidal input by computer simulation. Simulation results show that the equivalent amplitude resolution of the I and Q components can be increased by 3 bits in comparison with non-oversampling case.<>
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利用带bp滤波器的多级抽取器提取过采样带通信号的相位分量和正交分量及其性能评价
我们提出了一种利用窄带带通希尔伯特变压器从过采样带通信号中提取数字相位(I)和正交(Q)分量的方法。采用复系数带通数字滤波器(bpf)的多级十进制器实现数字化中频信号到基带的下变频和量化噪声的降低,该滤波器由带通希尔伯特变压器组成。在一定条件下,多级十进制器中的大多数复系数滤波器都可以用低通滤波器代替,从而减少了计算量。通过计算机仿真计算了正弦输入的I和Q分量的信噪比。仿真结果表明,与非过采样情况相比,I和Q分量的等效幅度分辨率可提高3位。
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