Title :
New digital vibrometer with high accuracy using self-mixing type LDV
Author :
Hara, Katsuhiko ; Shinohara, Shigenobu ; Ikeda, Hiroaki ; Yoshida, Hirofumi ; Sumi, Masao
Author_Institution :
Shizuoka Univ., Hamamatsu, Japan
Abstract :
We propose a new compact digital vibrometer using a self-mixing laser Doppler velocimeter (SM-LDV) with a new measurement circuit. The Doppler beat signal obtained from a self-mixing laser diode (SM-LD) has a sawtooth-like waveform, in which every sawtooth corresponds to a displacement of a half light wavelength. The new measurement circuit can always, discriminate precisely a positive or a negative displacement by comparing a rise time with a fall time of a sawtooth employing a magnitude comparator. The measurement accuracy for the vibrational displacement is greatly increased within 0.5 percent even for a degraded sawtooth. We can obtain a vibrational displacement waveform as well as its frequency spectrum by FFT. Since the new digital vibrometer with high accuracy can be made compact and inexpensive, it is useful for vibration analysis of many kinds of vibrating bodies
Keywords :
Doppler measurement; counting circuits; digital instrumentation; discriminators; displacement measurement; fast Fourier transforms; laser velocimetry; spectral analysers; vibration measurement; waveform analysis; Doppler beat signal; FFT; GaAlAs; degraded sawtooth; digital vibrometer; fall time; frequency spectrum; negative displacement; rise time; sawtooth-like waveform; self-mixing laser Doppler velocimeter; vibration analysis; vibrational displacement; vibrational displacement waveform; Counting circuits; Degradation; Diode lasers; Displacement measurement; Integrated circuit measurements; Pulse circuits; Shape measurement; Vibration measurement; Vibrometers; Wavelength measurement;
Conference_Titel :
Instrumentation and Measurement Technology Conference, 1997. IMTC/97. Proceedings. Sensing, Processing, Networking., IEEE
Conference_Location :
Ottawa, Ont.
Print_ISBN :
0-7803-3747-6
DOI :
10.1109/IMTC.1997.610210