Optics, Profilometer, Fourier transform, Spatial frequency and Grating are his primary areas of study. His Optics research includes elements of Digital filter, Point, Structured-light 3D scanner and Phase modulation. His research integrates issues of Structured light, Projector and Mapping algorithm in his study of Profilometer.
His Fourier transform research is multidisciplinary, incorporating elements of Fourier transform profilometry, Object, Low frequency and Wavelet transform. His work deals with themes such as Algorithm, Optical filter and Modulation, which intersect with Spatial frequency. His Grating research integrates issues from Image processing and Projection, Computer vision, Artificial intelligence.
Xianyu Su mostly deals with Optics, Fourier transform, Artificial intelligence, Profilometer and Computer vision. His study in the field of Grating, Spatial frequency and Projector also crosses realms of Calibration. His Fourier transform study combines topics in areas such as Fourier transform profilometry, Harmonic wavelet transform and Wavelet transform.
Xianyu Su combines subjects such as Electronic engineering, Holography and Pattern recognition with his study of Artificial intelligence. His research in Profilometer intersects with topics in Lens, Distribution and Image processing, Frame grabber. The concepts of his Computer vision study are interwoven with issues in Algorithm and Visualization.
His primary areas of study are Optics, Algorithm, Artificial intelligence, Profilometer and Computer vision. His work on Contrast as part of his general Optics study is frequently connected to Modulation, thereby bridging the divide between different branches of science. His Artificial intelligence research focuses on Photonics and how it relates to Latency.
Profilometer and Grating are commonly linked in his work. His Grating research incorporates elements of Lens, Fourier transform and Beam splitter. The Computer vision study combines topics in areas such as Specular reflection and Reflection.
Optics, Distortion, Absolute phase, Fourier transform and Binary pattern are his primary areas of study. His Optics study integrates concerns from other disciplines, such as Phase error and Sequence. His Distortion research is multidisciplinary, incorporating perspectives in Algorithm, Quadratic equation and Piecewise linear function.
Xianyu Su has researched Absolute phase in several fields, including Specular reflection, Reflection, Field of view and Triangulation. His work carried out in the field of Fourier transform brings together such families of science as Cylindrical lens and Hilbert spectral analysis. His studies deal with areas such as Projector, Limit and Structured-light 3D scanner as well as Binary pattern.
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Fourier transform profilometry:: a review
Xianyu Su;Wenjing Chen.
Optics and Lasers in Engineering (2001)
Dynamic 3-D shape measurement method: A review
Xianyu Su;Qican Zhang.
Optics and Lasers in Engineering (2010)
Reliability-guided phase unwrapping algorithm: a review ☆
Xianyu Su;Wenjing Chen.
Optics and Lasers in Engineering (2004)
Automated phase-measuring profilometry using defocused projection of a Ronchi grating
Xian-Yu Su;Wen-Sen Zhou;G. von Bally;D. Vukicevic.
Optics Communications (1992)
Quality-guided phase unwrapping technique: comparison of quality maps and guiding strategies
Ming Zhao;Lei Huang;Qican Zhang;Xianyu Su.
Applied Optics (2011)
Improved Fourier transform profilometry for the automatic measurement of 3D object shapes
Jian Li;Xianyu Su;Lurong Guo.
Optical Engineering (1990)
A direct mapping algorithm for phase-measuring profilometry
W.-S. Zhou;X.-Y. Su.
Journal of Modern Optics (1994)
3-D shape measurement based on complementary Gray-code light
Qican Zhang;Xianyu Su;Liqun Xiang;Xuezhen Sun.
Optics and Lasers in Engineering (2012)
High-speed optical measurement for the drumhead vibration
Qican Zhang;Xianyu Su.
Optics Express (2005)
Two-frequency grating used in phase-measuring profilometry
Jie-Lin Li;Hong-Jun Su;Xian-Yu Su.
Applied Optics (1997)
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