Due to the variety of burner structure and fuel mixing, the flame temperature distribution is not only irregular but also complex. Therefore, it is necessary to develop an advanced temperature measurement technique, which can provide not only adequate flame radiative information but also reconstruct complex flame temperature accurately. In this paper, a novel multi-plenoptic camera imaging technique is proposed which is not only provide adequate flame radiative information from two different directions but also reconstruct the complex flame temperature distribution accurately. An inverse algorithm i.e., Non-Negative Least Squares is used to reconstruct the flame temperature. The bimodal asymmetric temperature distribution is considered to v...
This paper presents an imaging-based instrumentation system for three-dimensional (3-D) temperature ...
A burner array produces a multi-modal flame temperature field and a compact combustion region. A mul...
Based on a flame image processing technique, the temperature distributions of flame sections in a be...
Due to the variety of burner structure and fuel mixing, the flame temperature distribution is not on...
It is important to identify boundary constraints in the inverse algorithm for the reconstruction of ...
This paper presents an experimental investigation, visualization and validation in the three-dimensi...
This paper presents a novel geometric calibration method for focused light field camera to trace the...
Compared with conventional camera, the light field camera takes the advantage of being capable of re...
Flame temperature measurement through a light field camera shows an attractive research interest due...
This paper presents the technique which combines optical tomographic and two-color parametric techni...
Different light field cameras (traditional and focused) are considered for the flame temperature mea...
This paper presents the reconstruction of 3-D (three-dimensional) flame temperature and emissivity d...
The light field sectioning pyrometry (LFSP) has proven a significant advancement for in-situ measure...
This paper presents an imaging-based instrumentation system for three-dimensional (3-D) temperature ...
A burner array produces a multi-modal flame temperature field and a compact combustion region. A mul...
Based on a flame image processing technique, the temperature distributions of flame sections in a be...
Due to the variety of burner structure and fuel mixing, the flame temperature distribution is not on...
It is important to identify boundary constraints in the inverse algorithm for the reconstruction of ...
This paper presents an experimental investigation, visualization and validation in the three-dimensi...
This paper presents a novel geometric calibration method for focused light field camera to trace the...
Compared with conventional camera, the light field camera takes the advantage of being capable of re...
Flame temperature measurement through a light field camera shows an attractive research interest due...
This paper presents the technique which combines optical tomographic and two-color parametric techni...
Different light field cameras (traditional and focused) are considered for the flame temperature mea...
This paper presents the reconstruction of 3-D (three-dimensional) flame temperature and emissivity d...
The light field sectioning pyrometry (LFSP) has proven a significant advancement for in-situ measure...
This paper presents an imaging-based instrumentation system for three-dimensional (3-D) temperature ...
A burner array produces a multi-modal flame temperature field and a compact combustion region. A mul...
Based on a flame image processing technique, the temperature distributions of flame sections in a be...