Research on Nonlinear Error Compensation Method for Single-Frequency Laser Interferometer

2011 ◽  
Vol 31 (7) ◽  
pp. 0726003
Author(s):  
李立艳 Li Liyan ◽  
吴冰 Wu Bing ◽  
苑勇贵 Yuan Yonggui ◽  
魏勇 Wei Yong ◽  
杨军 Yang Jun ◽  
...  
2016 ◽  
Vol 679 ◽  
pp. 129-134
Author(s):  
Wan Duo Wu ◽  
Qiang Xian Huang ◽  
Chao Qun Wang ◽  
Ting Ting Wu ◽  
Hong Xie

The technique utilizing single-frequency laser interferometry has very high measurement accuracy, but it has rigorous requirements for optical design which is affected by many factors. In order to achieve single-frequency laser interferometry with large stroke and high precision, the integral layout, the polarization phase shifting technique and the common mode rejection method are adopted to design the length interferometry system. This paper analyzes factors and design requirements which affect measurement accuracy with large stroke. Based on polarization phase shifting technique, the system employs the four-beam-signal detection technique and the common mode rejection method, to make a differential processing of four mutually orthogonal signals. Thus, the influences of zero-drift of intensity and environmental change on system are reduced. Combined with a 200 phase subdivision, the system achieves the resolution with 0.8 nm. Under the VC++ environment, the displacement measurement results are compensated and corrected according to the environmental parameters. Compared with the Renishaw XL-80 laser interferometer, the system has better stability in short term. In the measuring range of 60 mm, the effectiveness of the system is verified.


2020 ◽  
Vol 47 (9) ◽  
pp. 0904002
Author(s):  
严利平 Yan Liping ◽  
周春宇 Zhou Chunyu ◽  
谢建东 Xie Jiandong ◽  
陈本永 Chen Benyong ◽  
楼盈天 Lou Yingtian ◽  
...  

2019 ◽  
Vol 436 ◽  
pp. 264-268
Author(s):  
Yuan Yang ◽  
Yong Deng ◽  
Yidong Tan ◽  
Zhenyu Huang ◽  
Yong Zhang ◽  
...  

2018 ◽  
Vol 2018 ◽  
pp. 1-10
Author(s):  
Wei Shao ◽  
Peng Peng ◽  
Awei Zhou ◽  
Quanquan Zhu ◽  
Di Zhao

In view of the high precision requirement for mechanical structure of aeronautical blade measuring system, this paper proposes a laser interferometer to measure the error of the spatial nodes of the measuring system based on a comprehensive analysis of domestic and foreign error compensation methods for the measuring system. The optimized algorithm backpropagation (BP) neural network (OA-BPNN) compensation method is utilized to adaptively compensate for the systematic error of the mechanical system. Compared with the traditional polynomial fitting and genetic algorithm BP neural network (GA-BPNN) algorithm, the results show that the OA-BPNN algorithm is characterized by the best adaptability, precision, and efficiency for the adaptive error compensation. The spatial errors in the XYZ directions are reduced from 10.9, 60.1, and 84.2 μm to 1.3, 4.0, and 2.4 μm, respectively. The method is of great theoretical significance and practical value.


2011 ◽  
Vol 31 (1) ◽  
pp. 0112009
Author(s):  
李立艳 Li Liyan ◽  
苑勇贵 Yuan Yonggui ◽  
吴冰 Wu Bing ◽  
刘彬彬 Liu Binbin ◽  
杨军 Yang Jun ◽  
...  

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