Company Filing History:
Years Active: 2019-2025
Title: Tamy Boubekeur: Innovating with Differentiable Procedural Materials and 3D Primitives
Introduction:
In the world of innovation and patents, Tamy Boubekeur, a Paris-based inventor and researcher, stands out for his significant contributions to the field. With a strong focus on computer graphics and imaging, Boubekeur has successfully filed and obtained 15 patents, showcasing his expertise in generating differentiable procedural materials and fitting 3D primitives to high-resolution point clouds. Let's delve into some of his latest patents and explore his notable collaborations and work history.
Differentiable Procedural Materials:
One of Boubekeur's recent patents revolves around an end-to-end differentiable pipeline for optimizing parameters of a base procedural material. This innovative system aims to generate procedural materials corresponding to target physical materials. By utilizing a digital image of the target physical material, Boubekeur's system retrieves a differentiable procedural material as a base and compares the visual appearance using a loss function. Based on the determined loss, the system then modifies the parameters of the base procedural material to generate a procedural material suitable for the target physical material. This patent showcases Boubekeur's groundbreaking approach to visual material generation.
Fitting 3D Primitives to Point Clouds:
In another notable patent, Boubekeur introduces systems, methods, and computer storage media for fitting 3D primitives to a given point cloud. This innovative approach involves a global and local primitive fitting network to evaluate both the global structure and local patches of the point cloud, respectively. The global network focuses on regressing representations of larger primitives that fit the overall structure, while the local network identifies smaller 3D primitives for regions with fine detail. Ultimately, a combined, multi-scale set of fitted primitives is generated, and representative primitive parameters are computed for each fitted primitive. Boubekeur's technique offers an efficient solution for analyzing 3D point clouds.
Work History and Collaborators:
Throughout his career, Tamy Boubekeur has collaborated with esteemed companies and researchers in the field of computer graphics. Notably, he has contributed his expertise to Adobe Inc., a leading software corporation renowned for its creative and imaging solutions. His work with Adobe demonstrates his dedication to advancing the digital imaging realm and pushing the boundaries of artistic expression.
Boubekeur's contributions extend to his association with Institut Mines-Telecom, a prestigious institution promoting research and innovation in the fields of engineering and digital technologies. This collaboration highlights his commitment to academic research and knowledge-sharing within the scientific community.
Furthermore, Boubekeur has had the privilege of working with accomplished individuals such as Anthony Salvi and Thibaud Lambert, who have undoubtedly contributed to his patent achievements. Collaborations like these signify the power of teamwork and knowledge exchange in driving innovation forward.
Conclusion:
Tamy Boubekeur's extensive contributions to the fields of differentiable procedural materials and 3D primitives fitting demonstrate his prowess in computer graphics and imaging. With 15 patents to his name and collaborations with notable companies and researchers, Boubekeur's work represents a significant stride in advancing digital material generation and 3D point cloud analysis. By harnessing his expertise, Boubekeur imparts invaluable knowledge and resources to the innovation landscape, leaving a lasting impact on the field.
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