五路控制信号传输系统采用DSP

W. Zhonglei, H. Ikeda, H. Yoshida
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引用次数: 0

摘要

数字信号处理(DSP)已成为现代控制信号传输的重要工具。本文讨论了一种五通道控制信号传输系统,使其能够在低频率下同时传输五通道并行数字数据。该系统的特点是实现了用于数据检测的bpf。根据实现带通滤波器(BPF)的算法,利用DSP硬件从多频率中拾取每个频率分量。与运算放大器实现的传统BPF不同,BPF输出具有锐利的截止,即使频率在400 Hz至600 Hz范围内,也可以消除其他频率之间的串扰。当BPF在中心频率为500 Hz时具有带通特性,同时施加400 Hz和600 Hz的频率时,串扰为-40 dB或更小。当以1 Hz或更低的重复率应用逐步输入的包络时,延迟时间为15 ms。由于多频信号在低频时的优异性能,压缩了传输所需的带宽,并且由于时间延迟与多频信号的频率无关,消除了数据传输的倾斜。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Five-channel control signal transmission system using DSP
Digital signal processing (DSP) has become an important modern tool to transmit control signals. This paper discusses a five-channel control signal transmission system so that it can simultaneously transmit five channels of parallel digital data at low frequencies. This new system is characterized by the realization of the BPFs used for data detection. Each frequency component is picked up from multifrequencies utilizing the DSP hardware in accordance with the algorithm used to realize a bandpass filter (BPF). The BPF output has a sharp cutoff which eliminates crosstalk among the other frequencies even though the frequency is in the range of 400 Hz to 600 Hz unlike the conventional BPF realized by operational amplifiers. When frequencies of 400 Hz and 600 Hz were applied to the BPF at the same time as and when the BPF had a bandpass characteristic at a center frequency of 500 Hz, the crosstalk was -40 dB or less. When an envelope of a stepwise input at a repetition rate of 1 Hz or less was applied, the delay time was 15 ms. Due to the excellent performance, multifrequency signals at low frequencies compress the bandwidth needed for transmission and eliminate the skewing of data transmission since the time delay is independent of the frequencies of the multifrequency signals.
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