High-accuracy 3-D deformation measurement method with an improved structured-light principle

被引:0
作者
GUO QinFeng
WANG JinJun
机构
[1] FluidMechanicsKeyLaboratoryofEducationMinistry,BeihangUniversity
关键词
D O I
暂无
中图分类号
V214.11 [];
学科分类号
08 ; 0825 ;
摘要
In this paper, a high-accuracy 3-D deformation measurement(HADM) method with structured light is proposed and applied to wing deformation measurement in wind tunnel experiments. The present method employs an arbitrarily arranged fringe projector and a perpendicularly placed camera. The exact phase-height mapping using the phase differences of the projected sinusoidal fringe patterns, as well as the spatial distribution of the fringe, is accurately derived. It not only presents high feasibility but also reduces systemic uncertainties arising from deviations between the ideal model and the real-world conditions. Meanwhile, a dynamic boundary process algorithm is proposed to reduce the measurement uncertainty caused by fringe fracture near the object boundary. It is calibrated that a high accuracy with the average measurement uncertainty of 0.0237 mm is achieved, which is less than 0.01% of the side length of 25 cm of the field of view. In the wind tunnel experiments, the 3-D deformations of the elastic wing, particularly the key geometric parameters such as wing tip position, angle of attack, and dihedral angle, are well reconstructed to provide an in-depth explanation for the aerodynamic characteristics.
引用
收藏
页码:3450 / 3461
页数:12
相关论文
共 50 条
[21]   High-speed 3-D shape measurement using composite structured-light patterns and multi-view system [J].
Yin, Wei ;
Zuo, Chao ;
Feng, Shijie ;
Tao, Tianyang ;
Chen, Qian .
OPTICAL METROLOGY AND INSPECTION FOR INDUSTRIAL APPLICATIONS V, 2018, 10819
[22]   Accuracy Investigation for Structured-light Based Consumer 3D Sensors [J].
Boehm, Jan .
PHOTOGRAMMETRIE FERNERKUNDUNG GEOINFORMATION, 2014, (02) :117-127
[23]   Dual-beam structured-light scanning for 3-D object modeling [J].
Park, J ;
DeSouza, GN ;
Kak, AC .
THIRD INTERNATIONAL CONFERENCE ON 3-D DIGITAL IMAGING AND MODELING, PROCEEDINGS, 2001, :65-72
[24]   High-precision structured-light 3D measurement method based on multi-view Scheimpflug imaging [J].
Liu Y. ;
Zhang G. ;
Hu P. ;
Deng H. ;
Yang S. .
Yi Qi Yi Biao Xue Bao/Chinese Journal of Scientific Instrument, 2023, 44 (03) :33-40
[25]   Verification of neuronavigated TMS accuracy using structured-light 3D scans [J].
Matilainen, Noora ;
Kataja, Juhani ;
Laakso, Ilkka .
PHYSICS IN MEDICINE AND BIOLOGY, 2024, 69 (08)
[26]   PRECISION AND ACCURACY PARAMETERS IN STRUCTURED LIGHT 3-D SCANNING [J].
Eiriksson, Eypor R. ;
Wilm, Jakob ;
Pedersen, David B. ;
Aanaes, Henrik .
LOWCOST3D (LC3D), SENSORS, ALGORITHMS, APPLICATIONS, 2016, 40-5 (W8) :7-15
[27]   A structured-light 3D sensor-based shape measurement method for casting allowance evaluation [J].
Luo, Hua ;
Zhang, Ke ;
Li, Ruifeng ;
Xia, Yu ;
Liang, Peidong .
FRONTIERS IN PHYSICS, 2022, 10
[28]   HIGH-ACCURACY CAMERA CALIBRATION FOR 3-D COMPUTER VISION [J].
NOMURA, Y ;
SAGARA, M ;
NARUSE, H ;
IDE, A .
IECON 89, VOLS 1-4: POWER ELECTRONICS - SIGNAL-PROCESSING & SIGNAL CONTROL - FACTORY AUTOMATION, EMERGING TECHNOLOGIES, 1989, :480-485
[29]   Substrate requirements to enable durability and accuracy in structured-light based 3D sensing [J].
Schreiber, Horst .
OPTICAL COMPONENTS AND MATERIALS XVI, 2019, 10914
[30]   3D Snow Sculpture Reconstruction Based on Structured-Light 3D Vision Measurement [J].
Liu, Wancun ;
Zhang, Liguo ;
Zhang, Xiaolin ;
Han, Lianfu .
APPLIED SCIENCES-BASEL, 2021, 11 (08)