Adaptive Data Processing Algorithm in Problems of Measuring Three-Dimensional Geometry by Phase Triangulation Methods under Additive Noise in the Photodetector

S. V. Dvoinishnikova, *, G. V. Bakakina, **, V. O. Zueva, ***, and V. G. Meledina, ****

aKutateladze Institute of Thermophysics, Siberian Branch, Russian Academy of Sciences, Novosibirsk, 630090 Russia

email: *dv.s@mail.ru
email: **bakakin@itp.nsc.ru
email: ***vlad.zuev.0017@mail.ru
email: ****meledin@itp.nsc.ru

Received 31 August, 2022

Abstract— An adaptive data processing algorithm is proposed for measuring a three-dimensional profile using phase triangulation methods under conditions of random additive noise and a limited dynamic range of the photodetector. The algorithm is based on a statistical analysis of the intensity distribution in the recorded phase images and adaptive filtering. The method permits reducing the measurement error of three-dimensional geometry by phase triangulation methods and measuring the three-dimensional profile of complex-shaped objects with arbitrary light-scattering properties. The method is very promising for industrial use.

Keywords: 3D geometry, phase triangulation, dynamic range, statistical analysis

DOI: 10.1134/S1990478923010076