Least Squares Orthogonal Distance Fitting of Curves and Surfaces in Space
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| Produkt | Varenr. | Pris | Handling |
|---|---|---|---|
| Least Squares Orthogonal Distance Fitting of Curves and Surfaces in Space | 9783540239666 | 419,95 kr | Til butik |
| Least Squares Orthogonal Distance Fitting of Curves and Surfaces in Space | 9783540239666 | 419,95 kr | Til butik |
Produktdetaljer
Least Squares Orthogonal Distance Fitting of Curves and Surfaces in Space
419,95 kr
Til butik- Varenr.:
- 9783540239666
Due to the continuing progress of sensor technology, the availability of 3-D cameras is already foreseeable. These cameras are capable of generating a large set of measurement points within a very short time. There are a variety of 3-D camera applications in the fields of robotics, rapid product development and digital factories. In order to not only visualize the point cloud but also to recognize 3-D object models from the point cloud and then further process them in CAD systems, efficient and stable algorithms for 3-D information processing are required. For the automatic segmentation and recognition of such geometric primitives as plane, sphere, cylinder, cone and torus in a 3-D point cloud, efficient software has recently been developed at the Fraunhofer IPA by Sung Joon Ahn. This book describes in detail the complete set of ‘best-fit’ algorithms for general curves and surfaces in space which are employed in the Fraunhofer software.
Læs mere hos Saxo DKLeast Squares Orthogonal Distance Fitting of Curves and Surfaces in Space
419,95 kr
Til butik- Varenr.:
- 9783540239666
Due to the continuing progress of sensor technology, the availability of 3-D cameras is already foreseeable. These cameras are capable of generating a large set of measurement points within a very short time. There are a variety of 3-D camera applications in the fields of robotics, rapid product development and digital factories. In order to not only visualize the point cloud but also to recognize 3-D object models from the point cloud and then further process them in CAD systems, efficient and stable algorithms for 3-D information processing are required. For the automatic segmentation and recognition of such geometric primitives as plane, sphere, cylinder, cone and torus in a 3-D point cloud, efficient software has recently been developed at the Fraunhofer IPA by Sung Joon Ahn. This book describes in detail the complete set of ‘best-fit’ algorithms for general curves and surfaces in space which are employed in the Fraunhofer software.
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