基于真均方根值的高频交流信号测量

Ming Zhang, Nuo Li
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引用次数: 0

摘要

高频交流信号的均方根(root mean square, RMS)是数据采集的关键特性,但普通数据采集系统难以直接测量其值。本文简要介绍了高频交流信号均方根值的测量方法。采样计算方法是一种直观的方法,但对硬件要求较高。这种精确整流方法很容易通过运算放大器实现,但它只能用于几种特殊的波形,并不是一种真正的均方根值方法。热转换法是一种真正的均方根值法,带宽宽,但精度较低。基于对数计算的真均方根值法精度高,但带宽太窄。本文采用基于对数计算的真均方根法进行发动机操纵地面实验。根据这一原理,我们设计了一种信号调理模块,可以将高频交流信号转换成直流信号,并通过数据采集卡进行采集。最后,通过RMS精度测试和频响测试等一系列实验验证了该方法的精度。实验证明,当输入信号的最高频率小于500k Hz时,信号调理模块的精度优于1%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurement of high frequency AC signals based on the true root mean square value
The root mean square (RMS) of high frequency AC signals is the key characteristic for data acquisition, but its value is hard to be measured directly by common data acquisition system. In this paper, we gave a brief introduction about the measurement for RMS value of high frequency AC signal. The sampling computation method is an intuitive way but it needs high hardware requirements. The precision rectification method is easy to realize by operational amplifiers but it can only be used in several special waveforms and isn't a true RMS value method. The thermal conversion method is a true RMS value method and good at wide bandwidth but its accuracy is low. The true RMS value method based on logarithmic computing has high accuracy but its bandwidth is too narrow. In this paper, we adopted the true RMS value method based on logarithmic computing in engine manipulation ground experiment. With this principle, we designed a kind of signal conditioning module which can change the high frequency AC signals into DC values and be acquired by data acquisition cards. In the end, we checked the accuracy with serial experiments such as the RMS accuracy test and frequency response test. We proved that the accuracy of the signal conditioning module is better than 1% when the highest frequency of input signal is less than 500k Hz.
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