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High synchronization absolute distance measurement using a heterodyne and superheterodyne combined interferometer

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【作者】 殷子淇; 李芳妃; 孙云科; 邹运; 王彦; 杨宏兴; 胡鹏程; 付海金; 谭久彬;

【Author】 Ziqi Yin;Fangfei Li;Yunke Sun;Yun Zou;Yan Wang;Hongxing Yang;Pengcheng Hu;Haijin Fu;Jiubin Tan;Center of Ultra-precision Optoelectronic Instrument,Harbin Institute of Technology;Key Laboratory of Ultra-precision Intelligent Instrumentation (Harbin Institute of Technology),Ministry of Industry and Information Technology;

【通讯作者】 杨宏兴;

【机构】 Center of Ultra-precision Optoelectronic Instrument,Harbin Institute of Technology; Key Laboratory of Ultra-precision Intelligent Instrumentation (Harbin Institute of Technology),Ministry of Industry and Information Technology;

【摘要】 We propose an absolute distance measurement method that employs heterodyne and superheterodyne combined interferometers to achieve synchronous detection and demodulation of multiwavelengths. Coarse and fine synthetic wavelengths are generated by a dual-longitudinal-mode He–Ne laser and four acoustic optical frequency shifters. Further,to improve phase synchronization measurement for multiwavelengths, we analyze the demodulation characteristics of coarse and fine measurement signals and adopt a demodulation method suitable for both signals. Experimental results demonstrate that the proposed method can achieve high-precision synchronous demodulation of multiwavelengths, and standard deviation is 1.7 × 10-5m in a range of 2 m.

【Abstract】 We propose an absolute distance measurement method that employs heterodyne and superheterodyne combined interferometers to achieve synchronous detection and demodulation of multiwavelengths. Coarse and fine synthetic wavelengths are generated by a dual-longitudinal-mode He–Ne laser and four acoustic optical frequency shifters. Further,to improve phase synchronization measurement for multiwavelengths, we analyze the demodulation characteristics of coarse and fine measurement signals and adopt a demodulation method suitable for both signals. Experimental results demonstrate that the proposed method can achieve high-precision synchronous demodulation of multiwavelengths, and standard deviation is 1.7 × 10-5m in a range of 2 m.

【基金】 supported by the National Natural Science Foundation of China (No. 52175500);the National Key Research and Development Program of China (No. 2022YFF0605102);the Natural Science Foundation of Heilongjiang Province (No. LH2019E048)
  • 【文献出处】 Chinese Optics Letters ,中国光学快报(英文版) , 编辑部邮箱 ,2024年01期
  • 【分类号】TH744.3
  • 【下载频次】5
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