用于大范围高精度实时位移测量的半导体激光干涉仪


Autoria(s): 何国田; 王向朝; 曾爱军; 唐锋; 黄炳杰
Data(s)

2007

Resumo

现有的半导体激光干涉仪存在测量精度与测量范围的矛盾。本文提出一种新的实时位移测量半导体激光干涉仪,并分析了干涉仪的测量原理。首先提出一种新的解相算法,它通过两路实时相位探测电路从干涉信号中得到待测量相位,消除了光强波动、初始光程差、电路放大倍数、调制深度、Bessel函数等参数对测量精度的影响,提高了测量精度。其次,提出一种扩大测量范围的技术,并用解包裹电路得到真实相位和待测量的位移, 将测量范围从半个波长提高到几个波长。在实验中,测得喇叭的峰峰值为2361.7nm,重复测量精度为2.56nm,测量时间为

To resolve the conflict of large measurement range and high accuracy in the existing real-time laser diode (LD) interferometers for displacement measurement, a novel real-time LD interferometry for displacement measurement is proposed and its measurement principle is analyzed. By use of a new phase demodulation algorithm and a new phase compensation algorithm of real-time phase unwrapping, the measurement accuracy is improved, and the measurement range is enlarged to a few wavelengths. In experiments, the peak-to-peak amplitude of the speaker vibration was 2361.7 nm, and the repeatability was 2.56 nm. The measurement time was less than 26 microseconds.

Identificador

http://ir.siom.ac.cn/handle/181231/1346

http://www.irgrid.ac.cn/handle/1471x/10198

Idioma(s)

英语

Fonte

何国田;王向朝;曾爱军;唐锋;黄炳杰.用于大范围高精度实时位移测量的半导体激光干涉仪,Chin. Opt. Lett.,2007,5(4):211-214

Palavras-Chave #激光器;半导体激光器 #实时测量 #光学检测 #解包裹 #干涉仪 #半导体激光 #Algorithms #Interferometers #Semiconductor lasers
Tipo

期刊论文