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Kaifang Wang

5 accepted papers

2025

Optimized Design and Calibration of a Human-Eye-Sized Active Binocular Vision System Based on Spherical Parallel Mechanism

RA-L 2025

The Active Binocular Vision System (ABVS), resembling the human eye, demonstrates potential for improving visual perception in robotic systems, especially in dynamic and complex environments. In this letter, we present an optimized design of a three degree-of-freedom (DoF) Active Monocular Vision Sy

Cited by 2SourceScholar
2024

Efficient Solution to PnP Problem Based on Vision Geometry

RA-L 2024

Perspective-n-Point (PnP) problem aims to estimate pose from known 3D map points and their projections. Efficient PnP (EPnP), one of the classical PnP solvers, represents camera pose with control points, which are easier to estimate utilizing the least square (LS) formulation. However, the geometry

Cited by 9SourceScholar
2024

Pixel-Level Precision Saccade Control of Arbitrary 3D Spatial Points in Active Binocular Vision Systems

RA-L 2024

We propose a vision-based method to achieve Pixel-Level precision saccadic movements in an active binocular vision system (ABVS). Traditional methods for precise saccadic motion rely heavily on extensive training or accurate kinematic models. However, extensive pre-training reduces the flexibility o

Cited by 0SourceScholar
2022

Simultaneous Calibration of Multiple Revolute Joints for Articulated Vision Systems via SE(3) Kinematic Bundle Adjustment

RA-L 2022

We propose a vision-based approach to calibrate kinematic structure of low degree-of-freedom (DoF) articulated systems. Standard hand-eye calibration yields excellent eye-to-hand relations by explicitly estimating end-effector mounted camera poses from the Perspective-n-Point (PnP) problem of a sing

Cited by 7SourceScholar