基于低频巴特沃斯原型复杂带通滤波器的串行模拟数字 QAM 调制解调器

Y. Grebenko, R. Polyak, L.P. Yan
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引用次数: 0

摘要

这篇文章专门讨论了正交振幅调制算法的开发和实施,该算法基于带有巴特沃斯低频原型的模拟复杂带通滤波器。使用复巴特沃斯带通滤波器可以获得几乎没有重叠频谱的载波信号。但是,模拟复巴特沃斯滤波器具有非线性相频响应,因此其脉冲响应是无限和不对称的。概述基于模拟巴特沃斯复带通滤波器和反向数字 FIR 滤波器的串行 QAM 调制解调器的开发和实施。考虑了模拟复杂带通巴特沃斯滤波器脉冲响应表达式的获取过程。在电路仿真的帮助下,确定了这种滤波器的频率响应和脉冲响应。中心频率的选择是通过设置两个系数来实现的。提出了一个基于模拟复巴特沃斯带通滤波器和反数字 FIR 滤波器的正交调幅串行数据传输系统框图。介绍了其在 Micro-Cap 环境下的电路仿真结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Serial Analog-Digital QAM Modems Based on Complex Band-Pass Filters with LF Butterworth Prototypes
The article is devoted to the development and implementation of quadrature amplitude modulation algorithms based on an analog complex band-pass filter with Butterworth low-frequency prototypes. The use of complex Butterworth band pass filters makes it possible to obtain carrier signals with practically non-overlapping spectra. But the analog complex Butterworth filter has a non-linear phase-frequency response and, accordingly, the impulse responses of which are infinite and asymmetric. An overview of the development and implementation of a serial QAM modem based on an analog Butterworth complex band-pass filter and an inverse digital FIR filter. The procedure for obtaining the expression for the impulse response of analog complex band-pass Butterworth filters is considered. With the help of circuit simulation, the frequency response and impulse response of such a filter are determined. The choice of the center frequency is carried out by setting two coefficients. A block diagram of a serial data transmission system with quadrature amplitude modulation based on an analog complex Butterworth bandpass filter and an inverse digital FIR filter is proposed. The results of its circuit simulation in the Micro-Cap environment are presented.
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