A novel 3D shape reconstruction method based on maximum correntropy Kalman filtering

Author:

Chen Man,Zhong Yong,Li Zhendong,Wu Jin

Abstract

Purpose This paper aims to investigate a novel shape from focus (SFF) algorithm based on maximum correntropy Kalman filtering (SFF-MCKF) for solving the problem that traditional SFF methods are weak in de-noising and spatial continuity. Design/methodology/approach To be specific, it was first assumed that the predicted depth of next pixel is equal to the depth of the current pixel according to spatial continuity. Besides, the observing data are derived from the estimation of traditional SFF and the corresponding covariance of noise is adaptively calculated by the entropy along the optical axis. Finally, to enhance robustness, we systematically conduct MCKF iteratively in four transfer directions that are 0°, 90°, 45° and −45°, respectively. Findings The experimental results indicate that the robustness of SFF-MCKF facing noises as well as the spatial continuity is better than that of the existing representative ones. Research limitations/implications As the proposed method is aimed at precision objects, high demand is for experimental device. Unstable device unregister the source images, which is unfavorable for observing data. Originality/value SFF-MCKF can be applied to many precision object measurements without significant drifts, such as the surface reconstruction of metal objects and electronic components. Besides, the computation cost is low, and SFF-MCKF has a wide range of real-time industrial applications.

Publisher

Emerald

Subject

Electrical and Electronic Engineering,Industrial and Manufacturing Engineering

Reference23 articles.

1. A heuristic approach for finding best focused shape;IEEE Transactions on Circuits & Systems for Video Technology,2005

2. Maximum correntropy Kalman filter;Automatica,2017

3. Steady-state mean-square error analysis for adaptive filtering under the maximum correntropy criterion;IEEE Signal Processing Letters,2014

4. Fast adaptive guidance against highly maneuvering targets;IEEE Transactions on Aerospace and Electronic Systems,2016

5. Navigation, guidance and control of an overactuated marine surface vehicle;Annual Reviews in Control,2015

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