Galeti José Henrique, Kitano Cláudio, Connelly Michael J
Appl Opt. 2015 Dec 10;54(35):10418-24. doi: 10.1364/AO.54.010418.
Synthetic-heterodyne demodulation is a useful technique for dynamic displacement and velocity measurement using interferometric sensors as it can provide an output signal which is immune to interferometric drift. With the advent of cost effective, high-speed real-time signal processing systems and software, processing of the complex signals encountered in interferometry has become more feasible. In conventional synthetic-heterodyne demodulation schemes, to obtain the dynamic displacement or vibration of the object under test requires knowledge of the interferometer visibility and also the argument of two Bessel functions. In this paper, a new synthetic-heterodyne demodulation method is described leading to an expression for the dynamic displacement and velocity of the object under test that is significantly less sensitive to the received optical power. In addition, the application of two independent phase and gain feedback loops is used to compensate for the nonideal gain and phase response of the anti-aliasing filter required for the signal acquisition of the received wideband interferometer signal. The efficacy of the improved system is demonstrated by measuring the displacement sensitivity frequency response and linearity of a Piezoelectric Mirror-Shifter (PMS) over a range of 200 Hz-9 kHz. In addition, the system is used to measure the response of the PMS to triangular and impulse type stimuli. The experimental results show excellent agreement with measurements taken using two independent industry standard calibration methods.
合成外差解调是一种利用干涉传感器进行动态位移和速度测量的有用技术,因为它可以提供不受干涉漂移影响的输出信号。随着经济高效的高速实时信号处理系统和软件的出现,处理干涉测量中遇到的复杂信号变得更加可行。在传统的合成外差解调方案中,要获得被测物体的动态位移或振动,需要了解干涉仪的可见度以及两个贝塞尔函数的自变量。本文描述了一种新的合成外差解调方法,该方法得出的被测物体动态位移和速度表达式对接收光功率的敏感度显著降低。此外,应用两个独立的相位和增益反馈回路来补偿接收宽带干涉仪信号采集所需的抗混叠滤波器的非理想增益和相位响应。通过测量压电镜移器(PMS)在200 Hz至9 kHz范围内的位移灵敏度频率响应和线性度,证明了改进系统的有效性。此外,该系统还用于测量PMS对三角波和脉冲型刺激的响应。实验结果与使用两种独立的行业标准校准方法进行的测量结果非常吻合。