Paper
12 January 2018 A design of optical modulation system with pixel-level modulation accuracy
Shiwei Zheng, Xinghua Qu, Wei Feng, Baoqiu Liang
Author Affiliations +
Abstract
Vision measurement has been widely used in the field of dimensional measurement and surface metrology. However, traditional methods of vision measurement have many limits such as low dynamic range and poor reconfigurability. The optical modulation system before image formation has the advantage of high dynamic range, high accuracy and more flexibility, and the modulation accuracy is the key parameter which determines the accuracy and effectiveness of optical modulation system. In this paper, an optical modulation system with pixel level accuracy is designed and built based on multi-points reflective imaging theory and digital micromirror device (DMD). The system consisted of digital micromirror device, CCD camera and lens. Firstly we achieved accurate pixel-to-pixel correspondence between the DMD mirrors and the CCD pixels by moire fringe and an image processing of sampling and interpolation. Then we built three coordinate systems and calculated the mathematic relationship between the coordinate of digital micro-mirror and CCD pixels using a checkerboard pattern. A verification experiment proves that the correspondence error is less than 0.5 pixel. The results show that the modulation accuracy of system meets the requirements of modulation. Furthermore, the high reflecting edge of a metal circular piece can be detected using the system, which proves the effectiveness of the optical modulation system.
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Shiwei Zheng, Xinghua Qu, Wei Feng, and Baoqiu Liang "A design of optical modulation system with pixel-level modulation accuracy", Proc. SPIE 10621, 2017 International Conference on Optical Instruments and Technology: Optoelectronic Measurement Technology and Systems, 1062124 (12 January 2018); https://doi.org/10.1117/12.2296312
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KEYWORDS
Modulation

Digital micromirror devices

Image processing

Charge-coupled devices

Imaging systems

Moire patterns

Mirrors

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