Structure from Motion-based Motion Estimation and 3D Reconstruction of Unknown Shaped Space Debris
With the boost in the number of spacecraft launches in the current decades, the space debris problem is daily becoming significantly crucial. For sustainable space utilization, the continuous removal of space debris is the most severe problem for humanity. To maximize the reliability of the debris c...
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| Main Authors | , , , |
|---|---|
| Format | Journal Article |
| Language | English |
| Published |
02.08.2024
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| Subjects | |
| Online Access | Get full text |
| DOI | 10.48550/arxiv.2408.01035 |
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| Abstract | With the boost in the number of spacecraft launches in the current decades,
the space debris problem is daily becoming significantly crucial. For
sustainable space utilization, the continuous removal of space debris is the
most severe problem for humanity. To maximize the reliability of the debris
capture mission in orbit, accurate motion estimation of the target is
essential. Space debris has lost its attitude and orbit control capabilities,
and its shape is unknown due to the break. This paper proposes the Structure
from Motion-based algorithm to perform unknown shaped space debris motion
estimation with limited resources, where only 2D images are required as input.
The method then outputs the reconstructed shape of the unknown object and the
relative pose trajectory between the target and the camera simultaneously,
which are exploited to estimate the target's motion. The method is
quantitatively validated with the realistic image dataset generated by the
microgravity experiment in a 2D air-floating testbed and 3D kinematic
simulation. |
|---|---|
| AbstractList | With the boost in the number of spacecraft launches in the current decades,
the space debris problem is daily becoming significantly crucial. For
sustainable space utilization, the continuous removal of space debris is the
most severe problem for humanity. To maximize the reliability of the debris
capture mission in orbit, accurate motion estimation of the target is
essential. Space debris has lost its attitude and orbit control capabilities,
and its shape is unknown due to the break. This paper proposes the Structure
from Motion-based algorithm to perform unknown shaped space debris motion
estimation with limited resources, where only 2D images are required as input.
The method then outputs the reconstructed shape of the unknown object and the
relative pose trajectory between the target and the camera simultaneously,
which are exploited to estimate the target's motion. The method is
quantitatively validated with the realistic image dataset generated by the
microgravity experiment in a 2D air-floating testbed and 3D kinematic
simulation. |
| Author | Matsuoka, Takehiro Yoshida, Kazuya Uchida, Akiyoshi Uno, Kentaro |
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| BackLink | https://doi.org/10.48550/arXiv.2408.01035$$DView paper in arXiv |
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| Snippet | With the boost in the number of spacecraft launches in the current decades,
the space debris problem is daily becoming significantly crucial. For
sustainable... |
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| SubjectTerms | Computer Science - Computer Vision and Pattern Recognition Computer Science - Robotics |
| Title | Structure from Motion-based Motion Estimation and 3D Reconstruction of Unknown Shaped Space Debris |
| URI | https://arxiv.org/abs/2408.01035 |
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