Title :
Weak signal detector based on DAQ and lock-in technology
Author :
Mu Ahua ; Zhang Lei
Author_Institution :
Post-doctoral Sci. Res. Station, Naval Acad. of Armament, Beijing, China
Abstract :
The current weak signal measuring equipment is too large, expensive and lack of low-frequency measuring ability in the metrology support of hydro-acoustic detection. A low-cost, applicable, self-research and development weak signal detector is designed and realized through a 24-bit dynamic signal acquisition card. The software based on NI LabWindows/CVI adopts DAQmx, digital locked-in and cascade low pass filtering methods to ensure orthogonal precise measurements of frequency and amplitude for AC signals, which are partially or completely buried in noise. The functions of reference signal mathematical generation, algorithm simulation and signal analysis through software break the puzzle of the traditional design method depended on ultra-low noise amplifier and super-steady reference source. The test results show this device can extractly measure the micro-volt signal between 10 ~ 1000Hz.
Keywords :
data acquisition; frequency measurement; low-pass filters; signal detection; virtual instrumentation; AC signal amplitude measurement; AC signal frequency measurement; DAQ; DAQmx data acquisition; NI LabWindows/CVI software; algorithm simulation; cascade low pass filtering methods; digital locked-in; dynamic signal acquisition card; frequency 10 Hz to 1000 Hz; lock-in technology; microvolt signal measurement; reference signal mathematical generation; signal analysis; super-steady reference source; ultralow noise amplifier; weak signal detector; Data acquisition; Detectors; Frequency measurement; Instruments; Noise; Noise measurement; Software measurement; LabWindows/CVI; cascade low pass filter; data acquisition; digital lock-in; weak signal detection;
Conference_Titel :
Electronic Measurement & Instruments (ICEMI), 2013 IEEE 11th International Conference on
Conference_Location :
Harbin
Print_ISBN :
978-1-4799-0757-1
DOI :
10.1109/ICEMI.2013.6743072