This paper presents a novel geometric calibration method for focused light field camera to trace the rays of flame radiance and to reconstruct the three-dimensional (3-D) temperature distribution of a flame. A calibration model is developed to calculate the corner points and their projections of the focused light field camera. The characteristics of matching main lens and microlens f-numbers are used as an additional constrains for the calibration. Geometric parameters of the focused light field camera are then achieved using Levenberg-Marquardt algorithm. Total focused images in which all the points are in focus, are utilized to validate the proposed calibration method. Calibration results are presented and discussed in details. The maximu...
This paper presents an imaging-based instrumentation system for three-dimensional (3-D) temperature ...
A cage-typed light field camera system for flame temperature measurement is designed and fabricated ...
It is important to identify boundary constraints in the inverse algorithm for the reconstruction of ...
Focused light field camera can be used to measure three-dimensional (3-D) temperature field of a fla...
Different light field cameras (traditional and focused) are considered for the flame temperature mea...
Compared with conventional camera, the light field camera takes the advantage of being capable of re...
The light field sectioning pyrometry (LFSP) has proven a significant advancement for in-situ measure...
It is essential to investigate the light field camera parameters for the accurate flame temperature ...
Flame temperature measurement through a light field camera shows an attractive research interest due...
Due to the variety of burner structure and fuel mixing, the flame temperature distribution is not on...
Due to the variety of burner structure and fuel mixing, the flame temperature distribution is not on...
This paper presents an experimental investigation, visualization and validation in the three-dimensi...
This paper presents the reconstruction of 3-D (three-dimensional) flame temperature and emissivity d...
This paper presents an imaging-based instrumentation system for three-dimensional (3-D) temperature ...
A cage-typed light field camera system for flame temperature measurement is designed and fabricated ...
It is important to identify boundary constraints in the inverse algorithm for the reconstruction of ...
Focused light field camera can be used to measure three-dimensional (3-D) temperature field of a fla...
Different light field cameras (traditional and focused) are considered for the flame temperature mea...
Compared with conventional camera, the light field camera takes the advantage of being capable of re...
The light field sectioning pyrometry (LFSP) has proven a significant advancement for in-situ measure...
It is essential to investigate the light field camera parameters for the accurate flame temperature ...
Flame temperature measurement through a light field camera shows an attractive research interest due...
Due to the variety of burner structure and fuel mixing, the flame temperature distribution is not on...
Due to the variety of burner structure and fuel mixing, the flame temperature distribution is not on...
This paper presents an experimental investigation, visualization and validation in the three-dimensi...
This paper presents the reconstruction of 3-D (three-dimensional) flame temperature and emissivity d...
This paper presents an imaging-based instrumentation system for three-dimensional (3-D) temperature ...
A cage-typed light field camera system for flame temperature measurement is designed and fabricated ...
It is important to identify boundary constraints in the inverse algorithm for the reconstruction of ...