Acta Optica Sinica, Volume. 44, Issue 5, 0533001(2024)
Dynamic Distortion Assessment in Automobile Head-Up Displays with Subjective Methods
[1] Zhou T, Qiao W, Hua J Y et al. Status and prospect of augmented reality head-up display[J]. Laser & Optoelectronics Progress, 60, 0811008(2023).
[2] Kim K H, Park S C. Optical system design for a head-up display through analysis of distortion and biocular parallax[J]. Korean Journal of Optics and Photonics, 31, 88-95(2020).
[3] Xu N, Yu F Z, Xu J et al. HUDNet: a dynamic calibration method for automotive augmented reality head-up-displays[J]. Displays, 78, 102453(2023).
[4] Qin Z, Lin S M, Luo K T et al. Dual-focal-plane augmented reality head-up display using a single picture generation unit and a single freeform mirror[J]. Applied Optics, 58, 5366-5374(2019).
[5] Wei S L, Fan Z C, Zhu Z B et al. Design of a head-up display based on freeform reflective systems for automotive applications[J]. Applied Optics, 58, 1675-1681(2019).
[6] Yu F Z, Xu N, Chen S Q et al. Direct distortion prediction method for AR-HUD dynamic distortion correction[J]. Applied Optics, 62, 5720-5726(2023).
[7] Meng D Y, Yang X, Song Q et al. Large-scale volume holographic optical waveguide for automotive augmented reality head-up display[J]. Acta Optica Sinica, 43, 1011002(2023).
[8] Ran S W, Liu X M, Lei X H et al. Three-dimensional shape measurement of head-up display virtual image based on binocular vision[J]. Acta Optica Sinica, 42, 1912001(2022).
[9] Chen X W, Cao Y, Xue J L et al. Optimal design of optical modules for double free-form surface head-up display systems[J]. Laser & Optoelectronics Progress, 60, 0922001(2023).
[10] Fan R D, Wei S L, Ji H R et al. Automated design of freeform imaging systems for automotive heads-up display applications[J]. Optics Express, 31, 10758-10774(2023).
[11] Peddie J. Technology issues[M]. Augmented reality: where we will all live, 253-364(2023).
[12] Liu Y, Cheng D W, Wang Q W et al. Optical distortion correction considering radial and tangential distortion rates defined by optical design[J]. Results in Optics, 3, 100072(2021).
[13] Liu G W, Cai Y, Chen D Q et al. Distance estimation for precise object recognition considering geometric distortion of wide-angle lens[J]. Infrared Technology, 43, 1158-1165(2021).
[14] Li Y T, Zhang J, Hu W W et al. Laboratory calibration of star sensor with installation error using a nonlinear distortion model[J]. Applied Physics B, 115, 561-570(2014).
[15] Shen Z F. Research on laser galvanometer processing system of multi-parameter collaborative planning based on point set Bezier curve optimization[D](2021).
[16] Xia Z P, Hwang A. Self-position awareness-based presence and interaction in virtual reality[J]. Virtual Reality, 24, 255-262(2020).
[17] Emoto M. Simulator sickness questionnaire: an enhanced method for quantifying simulator sickness[J]. Displays, 29, 90-99(2008).
[18] Liu R, Cui S S, Zhao Y et al. VIMSNet: an effective network for visually induced motion sickness detection[J]. Signal, Image and Video Processing, 16, 2029-2036(2022).
[19] Wang F X, Wang J Y, Li X H et al. Just-noticeable difference of image contour rendering for a laser projection television[J]. Acta Optica Sinica, 40, 0533001(2020).
[20] Gu L, Cheng D W, Liu Y et al. Design and fabrication of an off-axis four-mirror system for head-up displays[J]. Applied Optics, 59, 4893-4900(2020).
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Tao Wang, Haifeng Li. Dynamic Distortion Assessment in Automobile Head-Up Displays with Subjective Methods[J]. Acta Optica Sinica, 2024, 44(5): 0533001
Category: Vision, Color, and Visual Optics
Received: Nov. 24, 2023
Accepted: Dec. 29, 2023
Published Online: Mar. 15, 2024
The Author Email: Li Haifeng (lihaifeng@zju.edu.cn)
CSTR:32393.14.AOS231831