Digital Demodulation Using I/Q Signals and Optical Phase Control Applied to a Vibrometer

激光多普勒测振仪 解调 光学 干涉测量 声学 利萨茹曲线 物理 电子工程 控制理论(社会学) 工程类 计算机科学 电气工程 激光器 频道(广播) 人工智能 分布反馈激光器 控制(管理)
作者
Angel Manuel Galvez-Limaco,José Henrique Galeti,Emílio Carlos Nelli Silva,Ricardo Tokio Higuti,Michael J. Connelly,Cláudio Kitano
出处
期刊:IEEE Sensors Journal [Institute of Electrical and Electronics Engineers]
卷期号:20 (19): 11313-11325 被引量:6
标识
DOI:10.1109/jsen.2020.2997900
摘要

An efficient and cost effective optical phase detection vibrometer based on a modified closed loop homodyne Michelson interferometer is presented. Real-time phase demodulation is carried out, using an embedded platform that performs data acquisition, signal processing, PI (proportional-integral) control and the generation of signals that drive the electrooptic Pockels cell phase shifter and the piezoelectric actuator under test. Two phase quadrature signals are generated from a single interferometric output, using the interleaving action, in alternation, of a digitally generated modulating signal, and then the well-known differential-cross-multiplication technique is applied to perform the computation of the phase shift of interest. The quadrature condition is reached using the PI loop based on an error signal obtained from a Lissajous figure derived from out-of-phase signals. The vibrometer is capable of measuring nanometric displacements, and is simple, inexpensive, accurate, immune to fading and self-consistent. The new method was used to determine the displacement frequency response curves of two prototypes of multi-actuated flextensional piezoelectric actuators. Measurements were made between 500 Hz and 15 kHz, and the results agreed with those obtained by the standard SCM-Signal Coincidence Method.
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