[1] Jingfa LEI, Yin SUN, Miao ZHANG et al. Topography measurement of strongly reflective surfaces based on improved automatic multi-exposure and digital raster projection technology. Acta Photonica Sinica, 52, 1212004(2023).
[2] Jie GAO, Yiping CAO, Jin CHEN. Online phase measurement profilometry based on super-resolution image reconstruction. Acta Photonica Sinica, 50, 0712003(2021).
[3] J XU, S ZHANG. Status, challenges, and future perspectives of fringe projection profilometry. Optics and Lasers in Engineering, 135, 106193(2020).
[4] C ZUO, S J FENG, L HUANG et al. Phase shifting algorithms for fringe projection profilometry: a review. Optics and Lasers in Engineering, 109, 23-59(2018).
[5] Z Z WANG. Review of real-time three-dimensional shape measurement techniques. Measurement, 156, 107624(2020).
[6] Y X WU, G X WU, L C LI et al. Inner shifting-phase method for high-speed high-resolution 3-D measurement. IEEE Transactions on Instrumentation and Measurement, 69, 7233-7239(2020).
[7] H X DENG, X LING, Y Y WANG et al. High-speed and high-accuracy fringe projection profilometry without phase unwrapping. Optics and Lasers in Engineering, 140, 106518(2021).
[8] X SU, Q ZHANG. Dynamic 3-D shape measurement method: a review. Optics and Lasers in Engineering, 48, 191-204(2010).
[9] X H PEI, M J REN, X WANG et al. Profile measurement of non-Lambertian surfaces by integrating fringe projection profilometry with near-field photometric stereo. Measurement, 187, 110277(2022).
[10] L C CHEN, Y T HUANG, K C FAN et al. A dynamic 3-d surface profilometer with nanoscale measurement resolution and MHz bandwidth for mems characterization. IEEE/ASME Transactions on Mechatronics, 12, 299-307(2007).
[11] C WADDINGTON, J KOFMAN. Analysis of measurement sensitivity to illuminance and fringe-pattern gray levels for fringe-pattern projection adaptive to ambient lighting. Optics and Lasers in Engineering, 48, 251-256(2010).
[12] Y WANG, J ZHANG, B LUO. High dynamic range 3D measurement based on spectral modulation and hyperspectral imaging. Optics Express, 26, 34442-34450(2018).
[13] L RAO, F P DA. High dynamic range 3D shape determination based on automatic exposure selection. Journal of Visual Communication and Image Representation, 50, 217-226(2018).
[14] Y ZHENG, Y WANG, V SURESH et al. Real-time high-dynamic-range fringe acquisition for 3D shape measurement with a RGB camera. Measurement Science and Technology, 30, 075202(2019).
[15] Y M CHEN, Y M HE, H ERYI. Phase deviation analysis and phase retrieval for partial intensity saturation in phase-shifting projected fringe profilometry. Optics Communications, 281, 3087-3090(2008).
[16] H GUO, B LV. Phase-shifting algorithm by use of Hough transform. Optics Express, 20, 26037-26049(2012).
[17] L ZHANG, C ZUO, S J FENG et al. High-speed high dynamic range 3D shape measurement based on deep learning. Optics and Lasers in Engineering, 134, 106245(2020).
[18] M YANG, N ZHOU, Y WANG. High dynamic range fringe pattern acquisition based on deep neural network. Optics Communications, 512, 127765(2022).
[19] M J LI, C K SUN, P WANG et al. A robust 3-d reconstruction approach based on correspondence retrieval using deep image prior. IEEE Transactions on Instrumentation and Measurement, 72, 1-12(2023).
[20] M J LI, C K SUN, P WANG et al. A multi-task learning-based approach for single-projection HDR 3D reconstruction. Measurement, 227, 114256(2024).