
30 hp - Efficient World Representations for End-to-End Autonomous Driving
A Master's thesis is an excellent way to get closer to TRATON Group R&D and build relationships for the future. In this thesis, you will contribute to EGoPT, a new industrial research project on World Models for Autonomous Driving.
Modern autonomous vehicles generate large amounts of sensor data from cameras, lidar, radar, and vehicle-state signals. Processing all this information at full resolution and over long temporal histories can exceed the computational budget available for real-time planning. Compressing it too aggressively, however, may remove information that is important for planning or safety.
The VINNOVA-FFI EGoPT project investigates how compact, task-aligned representations of multimodal sensor data can support real-time trajectory planning for autonomous heavy-duty vehicles. Current end-to-end driving methods and evaluation tools are mainly developed for passenger cars, while trucks introduce additional constraints related to vehicle size, articulation, load-dependent dynamics, braking distance, and computational resources.
The thesis will primarily use public datasets, open-source models, simulation, and planning benchmarks and emerging truck-focused resources.
The thesis will investigate an initial research question within EGoPT. Possible directions include:
During the thesis period, you will:
The expected outcome is a reproducible model baseline, evaluation method, or experimental framework that can support future research within EGoPT.
You are pursuing a Master's degree in computer science, machine learning, robotics, engineering physics, electrical engineering, or a related technical field.
A suitable candidate should have strong programming skills, preferably in Python and PyTorch; knowledge of machine learning and deep learning; an interest in autonomous driving, computer vision, transformers, representation learning, or simulation; and motivation to combine scientific investigation with practical implementation.
Number of students: 1
Start date for the thesis work: January 2027
Estimated time required: 20 weeks, full-time (30 hp)
Location: TRATON Group R&D, Södertälje
Industrial supervisors: Rafael Valencia Carreño, rafael.valencia.carreno@scania.com
Thomas Gustafsson, thomas.gustafsson@scania.com
Hiring managers: Maria Linnarsson, maria.linnarsson@scania.com, Magnus Granström, magnus.granstrom@scania.com
Your application must include a CV, personal letter and transcript of grades.
A background check might be conducted for this position. We are conducting interviews continuously and may close the recruitment earlier than the date specified.
Publication date:
1.10.2026 - 30.11.2026 (applications evaluated continuously)

Scania is a world-leading provider of transport solutions committed to a better tomorrow. Our purpose is to drive the shift towards a sustainable transport system. In doing so, we are creating a world of mobility that’s better for business, society and our environment.
Employing more than 50,000 people in about 100 countries, Scania’s research and development is concentrated in Sweden, while production takes place in Europe and South America.