AI Localization Doctorate student
Volvo GroupSammanfattning
This industrial PhD position focuses on developing and maintaining semantic 3D maps for construction sites, enhancing the safety and efficiency of autonomous machines. The role is based in Gothenburg, Sweden, with collaboration between the university and Volvo. Candidates will engage in research related to 3D reconstruction, semantic labelling, and dynamic environment modelling, while benefiting from access to unique field data and resources.Jobbet i korthet
Anställningstyp
tillsvidareanstallning
Arbetstid
heltid
Det här erbjuder vi
Fully funded doctoral position with access to unique field data from construction sites.Co-supervision from academia and an experienced Volvo autonomy/perception team.Access to compute resources (GPU clusters) and test machines.Collaborative research environment with opportunities to publish in leading venues.
Ansök senast: 2026-10-24
Publicerad: 2026-10-09
Beskrivning
BACKGROUND & RESEARCH PROBLEM
Construction sites are large, cluttered and constantly changing: material is moved, structures are built and removed, and people and machines share the same space. To operate autonomous machines safely and efficiently, we need rich 3D models of the worksite that carry semantic meaning and stay up to date as the environment evolves. This project investigates how to build and maintain semantic 3D maps of a worksite over extended periods of time.
OBJECTIVES
Industry: Investigate methods and tools for creating semantic 3D maps of the worksite and how to maintain them over extended periods of time.
Science
• Investigate approaches for modelling 3D environments and their joint semantic labelling into meaningful categories such as fixed structures, ground types, materials, people and machines.
• Investigate how semantic information can be used to intelligently partition the model into instances such as fixed structures, people, moving objects and rooms.
• Investigate how novel measurements of the environment can be efficiently used to update the existing model and produce information about dynamics, such as how people, objects or material move in the space.
Training: Broaden knowledge of the state of the art in related fields such as 3D reconstruction, semantic labelling of 3D environments, and modelling of dynamic environments.
YOUR PROFILE
• MSc in computer science, robotics, electrical engineering, applied mathematics, machine learning or a related field.
• Strong programming skills (Python and/or C++) and a solid mathematical foundation.
• Experience with one or more of: 3D perception, SLAM, computer vision, control theory or machine learning.
• Independent, curious and rigorous, with excellent written and spoken English.
WHAT WE OFFER
• A fully funded doctoral position working on a real industrial problem with access to unique field data from construction sites.
• Co-supervision from academia and an experienced Volvo autonomy/perception team.
• Compute resources (GPU clusters) and access to test machines and sensor platforms.
• A collaborative research environment with the ambition to publish at leading venues.
SCOPE & APPLICATION
Industrial PhD position, approx. 4-5 years, based in Gothenburg, Sweden, with time split between the university and Volvo. To apply, send your CV, grade transcript and a short motivation letter. Scope and start date are agreed together with the supervisors.
As part of the recruitment process, a background check as well as alcohol and drug testing may be conducted. You will be informed if applicable.
We value your data privacy and therefore do not accept applications via mail.
Construction sites are large, cluttered and constantly changing: material is moved, structures are built and removed, and people and machines share the same space. To operate autonomous machines safely and efficiently, we need rich 3D models of the worksite that carry semantic meaning and stay up to date as the environment evolves. This project investigates how to build and maintain semantic 3D maps of a worksite over extended periods of time.
OBJECTIVES
Industry: Investigate methods and tools for creating semantic 3D maps of the worksite and how to maintain them over extended periods of time.
Science
• Investigate approaches for modelling 3D environments and their joint semantic labelling into meaningful categories such as fixed structures, ground types, materials, people and machines.
• Investigate how semantic information can be used to intelligently partition the model into instances such as fixed structures, people, moving objects and rooms.
• Investigate how novel measurements of the environment can be efficiently used to update the existing model and produce information about dynamics, such as how people, objects or material move in the space.
Training: Broaden knowledge of the state of the art in related fields such as 3D reconstruction, semantic labelling of 3D environments, and modelling of dynamic environments.
YOUR PROFILE
• MSc in computer science, robotics, electrical engineering, applied mathematics, machine learning or a related field.
• Strong programming skills (Python and/or C++) and a solid mathematical foundation.
• Experience with one or more of: 3D perception, SLAM, computer vision, control theory or machine learning.
• Independent, curious and rigorous, with excellent written and spoken English.
WHAT WE OFFER
• A fully funded doctoral position working on a real industrial problem with access to unique field data from construction sites.
• Co-supervision from academia and an experienced Volvo autonomy/perception team.
• Compute resources (GPU clusters) and access to test machines and sensor platforms.
• A collaborative research environment with the ambition to publish at leading venues.
SCOPE & APPLICATION
Industrial PhD position, approx. 4-5 years, based in Gothenburg, Sweden, with time split between the university and Volvo. To apply, send your CV, grade transcript and a short motivation letter. Scope and start date are agreed together with the supervisors.
As part of the recruitment process, a background check as well as alcohol and drug testing may be conducted. You will be informed if applicable.
We value your data privacy and therefore do not accept applications via mail.
Ansök till tjänsten
AI Localization Doctorate student
OM FÖRETAGET
Volvo Group










