Vibration influence and error compensation of aspherical surface interferometer

Hongjun Wang, Jianfeng Cao, A. Tian, Bingcai Liu
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引用次数: 1

Abstract

In the technology of aspherical surface measurement, the phase shifting aspherical surface interferometer have widely used, but the vibration error from the environment is the main factor that directly affects the measurement accuracy of the phase shifting interferometer. In this paper, based on the structure of lateral shearing aspherical surface interferometer, the resources and sorts of vibration error were introduced, and some methods to eliminate errors were mentioned. The vibration influence on measurement results was analyzed. In order to reduce error, a new error compensation algorithm was put forward. In this method, first, a vibration measurement theory was built. Then Based on optic-electrical detection technology and image acquisition system and image process technology, the vibration mode of lateral shearing interferometer was obtained. Finally the vibration error of fringe image can be compensated by image correction. The measurement results can be obtained by the four-step phase shifting interferogram. The theoretical analysis and simulative results demonstrate the feasibility of this approach to improve measurement accuracy.
非球面干涉仪的振动影响及误差补偿
在非球面测量技术中,移相非球面干涉仪得到了广泛的应用,但是来自环境的振动误差是直接影响移相干涉仪测量精度的主要因素。本文从横向剪切非球面干涉仪的结构出发,介绍了振动误差的来源和种类,并提出了消除振动误差的方法。分析了振动对测量结果的影响。为了减小误差,提出了一种新的误差补偿算法。该方法首先建立了振动测量理论。然后基于光电检测技术、图像采集系统和图像处理技术,得到横向剪切干涉仪的振动模式。最后通过图像校正来补偿条纹图像的振动误差。测量结果可以通过四步移相干涉图得到。理论分析和仿真结果验证了该方法提高测量精度的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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