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Photometric stereopsis for 3D reconstruction of space objects
Xue Iuan Wong
, Manoranjan Majji
,
Puneet Singla
Aerospace Engineering
Research output
:
Chapter in Book/Report/Conference proceeding
›
Chapter
7
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Scopus citations
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Dive into the research topics of 'Photometric stereopsis for 3D reconstruction of space objects'. Together they form a unique fingerprint.
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Keyphrases
3D Reconstruction
100%
Sensor Tasking
100%
Space Object
100%
Resident Space Object
100%
Image Data
50%
Mathematical Model
50%
Sensor Systems
50%
Sensitivity Analysis
50%
Photometry
50%
Dynamic Data Driven Applications Systems (DDDAS)
50%
Surface Normal
50%
Data Assimilation
50%
Physics-based
50%
Image Features
50%
Relative Motion
50%
Forward Model
50%
Ray Tracing
50%
Surface Shape
50%
Data Alignment
50%
Sensor Scheduling
50%
Space Situational Awareness
50%
Illumination Conditions
50%
Shape Estimation
50%
Synthetic Images
50%
Imaging Physics
50%
Prediction Data
50%
Reconstructed Surface
50%
Computer Science
ray-tracing
100%
Application System
100%
Situational Awareness
100%
image feature
100%
Data Alignment
100%
Synthetic Image
100%
3d Reconstruction
100%
Successive Frame
100%
Relative Motion
100%
Illumination Condition
100%
Engineering
Space Object
100%
Target Object
66%
Image Data
33%
Sensor System
33%
Forward Model
33%
Relative Motion
33%
Shape Surface
33%
Situational Awareness
33%
Scheduling Operation
33%
Synthetic Image
33%
Mathematical Model
33%
Successive Frame
33%
Illumination Condition
33%
Physics
Physics
100%
Photometry
50%
Mathematical Model
50%
Data Assimilation
50%
Synthetic Image
50%
Situational Awareness
50%