具有精确控制信道间时延的双通道伪随机信号发生器

Lijun Xu, Jun Han, Zhang Tao, Huaxiang Wang
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引用次数: 2

摘要

本文提出了一种双通道伪随机信号发生器,用于相互相关流量计等相互相关器的标定。在该信号发生器中,两个通道具有完全相同的硬件结构,从而产生两个相同的伪随机信号序列,分别模拟从一个互相关器的上游和下游传感器获得的两个信号。在硬件和软件上都实施了特殊的控制策略,使两个通道之间的时间延迟控制误差可以降低到小于1微秒。每个信号通道的移位频率和序列长度以及两个通道之间的时间延迟可以在很宽的范围内调节,以满足大多数实际要求。各通道信号的启动/停止控制和上述参数的调整由带有专用键盘和LED显示屏的单片机完成。使用数字存储示波器(泰克TDS220)对仪器进行了评估。结果表明,当延时为1ms及以上时,延时控制精度优于0.05%。与E+H商用噪声信号发生器和MP噪声信号发生器的比较表明,该信号发生器的误差比其他两种信号发生器的误差小得多
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dual-Channel Pseudo-Random Signal Generator with Precise Control of Time Delay between Channels
In this paper, a dual-channel pseudo-random signal generator is presented for the calibration of cross-correlators such as cross-correlation-based flowmeters. In this signal generator, the two channels have completely identical hardware structures so that they generate two identical sequences of pseudo-random signals to simulate two signals obtained from the upstream and downstream sensors of a cross-correlator, respectively. Special control strategies both in hardware and software have been implemented in such a way that the control error of time delay between the two channels can be reduced to less than a microsecond. The shift frequency and sequence length of each signal channel and the time delay between the two channels can be adjusted in wide ranges to satisfy majority of practical requirements. The start/stop control of each channel of signal and adjustments of the above parameters are carried out by a microcontroller with a dedicated keyboard and an LED display. The instrument has been evaluated by using a digital storage oscilloscope (Tektronix TDS220). Results obtained show that the control precision of the time delay is better than 0.05% when the time delay is 1ms and over. Comparison with an E+H commercial noise signal generator and an MP noise generator shows that the error of the new generator is much smaller than those of the other two
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