Wan Yingying, Cao Yiping, Xu Min, Tang Tao
School of Physical Science and Technology, Southwest Jiaotong University, Chengdu 610031, China.
Department of Opto-Electronics, Sichuan University, Chengdu 610064, China.
Micromachines (Basel). 2023 Jun 16;14(6):1258. doi: 10.3390/mi14061258.
Intensity saturation can induce phase error and, thus, measurement error in fringe projection profilometry. To reduce saturation-induced phase errors, a compensation method is developed. The mathematical model of saturation-induced phase errors is analyzed for -step phase-shifting profilometry, and the phase error is approximately -folder of the frequency of the projected fringe. Additional -step phase-shifting fringe patterns with initial phase-shift / are projected for generating a complementary phase map. The final phase map is obtained by averaging the original phase map extracted from the original fringe patterns and the complementary phase map, and then the phase error can be canceled out. Both simulations and experiments demonstrated that the proposed method can substantially reduce the saturation-induced phase error and realize accurate measurements for a highly dynamic range of scenarios.
强度饱和会在条纹投影轮廓术中引起相位误差,进而导致测量误差。为了减少由饱和引起的相位误差,开发了一种补偿方法。针对多步相移轮廓术分析了由饱和引起的相位误差的数学模型,并且相位误差大约是投影条纹频率的 - 倍。投影具有初始相移 / 的附加多步相移条纹图案以生成互补相位图。通过对从原始条纹图案中提取的原始相位图和互补相位图进行平均来获得最终相位图,然后可以消除相位误差。仿真和实验均表明,所提出的方法可以大幅减少由饱和引起的相位误差,并在高动态范围的场景中实现精确测量。