Modular framework for 3D surface reconstruction

Entry from the 03.12.2024
Position number 118122
Job vacancy: From now on

Description

As part of an IGF project on particle measurement technology, research is being conducted on the dynamic image analysis of small particles, such as bricks and slag. The aim is to capture desired 3D information, such as particle sizes and shape characteristics, through multi-view recordings. To achieve this, popular methods of neural surface reconstruction (NSR) are used. These methods improve the 3D understanding of objects within a deep learning framework by reconstructing detailed 3D surfaces using image-based neural rendering techniques.

Several public codebases for NSR have gained importance in research. However, due to a lack of consolidation, numerous NSR repositories exist, each focusing on improving specific components of certain algorithms. These repositories often address different challenges, leading to parallel but incompatible implementations.

To efficiently capture the diverse and rapidly growing field of NSR research and to integrate ideas from various research projects, the following exemplary tasks are proposed for the offered position:
● Literature research on NSR,
● Classification and comparison of existing NSR methods,
● Consolidation of key techniques into modular and reusable components,
● Development of a user-friendly plug-and-play workflow,
● Support for geometry export formats, such as point clouds and meshes.

We offer
● excellent support and advice
● highend infrastructure
● contact to research partners
● publication opportunity

We expect
Students with a background in computer science, mathematics, electrical engineering, or other engineering majors. Pre-knowledge in image processing as well as computer graphics is welcome. Strong self-motivation, reliability, and critical mind are expected.

Job type/category
  • Working student
Field of study preferred
  • Engineering sciences
    Electrical engineering & information technologies
    Geodesy & geoinformatics
    Informatics
    Mechanical engineering
    Mechatronics & information technologies
    Mechanical Engineering
  • Natural sciences and Technology
    Applied geosciences
    Mathematics
  • Economic & law sciences
    Information Engineering
    Business management
    Business Mathematics
Favored career stage
  • Student
Location/region
  • Karlsruhe city, Karlsruhe region
Sector
  • Research
Industry branch
  • IT & Internet
  • Science & research
Language at workplace
  • German and english
Type of company
  • Scientific institution
Home office
  • Homeoffice possible

Contact

Mr. Jiachen Zhou
KIT
Adenauerring 2
76131 Karlsruhe
Germany
E-Mail: Please log in to read the stated e-mail address



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