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Master Thesis, 30 hp: Directional Propagation Technologies

  • On-site
  • Sweden
  • English
  • Posted 07.10.26 14:42

Master Thesis, 30 hp: Directional Propagation Technologies

Are you a student eager to apply your theoretical knowledge and fresh perspectives to real-world challenges? At Saab, we believe that innovation thrives on new ideas, and your master thesis project could be the spark that ignites our next technological breakthrough.

Your role

We recognize the immense value that students bring to our company. Your academic rigor, combined with your enthusiasm for cutting-edge technology, allows you to approach problems with a unique and insightful lens. At Saab, you'll have the opportunity to collaborate with experienced engineers and specialists, gaining invaluable practical experience while making a tangible contribution to our growth and development.

Background

Saab AB, Training and Simulation, develops realistic training systems ranging from individual soldier training to large-scale exercises involving vehicles and complete military units.

A recurring challenge in training and simulation systems is the representation and detection of directional events in complex environments. Such systems may require a physical signal or medium that can be generated, shaped and directed with sufficient spatial accuracy while interacting with materials, obstacles and the surrounding environment in a predictable and measurable way.

Different physical media and sensing technologies have fundamentally different propagation characteristics. Their behavior may be influenced by factors such as material properties, environmental conditions, distance, reflections, diffraction, scattering and interference. These differences create opportunities to investigate novel methods for achieving controlled directionality and spatial confinement.

There is therefore an interest in exploring physical principles and technologies that can produce a controlled propagation pattern while providing suitable and measurable interaction with the surrounding environment.

Description Of The Thesis Project

This master thesis will investigate physical methods for generating, directing and detecting controlled propagation patterns in training environments.

Potential approaches may include electromagnetic methods within the radio-frequency spectrum, optical methods, acoustics and ultrasound, alternative sensing principles, physics-based simulation, or combinations of several methods. Relevant technologies may include antenna arrays, beamforming, acoustic focusing, optical techniques and other methods for achieving directional propagation. The exact technical direction is intentionally open and will be guided by the findings during the thesis.

A central part of the work will be to investigate how a selected physical medium can be generated, shaped and directed into a suitable propagation pattern. The work will also consider how the medium interacts with materials, obstacles and environmental conditions, as well as how reliably the resulting interaction can be detected and evaluated.

The scope of this master thesis can be

Review and theoretical comparison of candidate physical principles and technologiesInvestigation of directionality, beam or lobe formation and spatial confinementInvestigation of propagation and interaction with selected materials and environmentsMathematical and/or numerical modelling of selected methodsSimulation and, where applicable, experimental evaluation and measurementsAnalysis of accuracy, uncertainty, robustness and practical limitationsComparison of technical feasibility and recommendations for future research and system development

The objective is to identify and evaluate physical principles that offer promising combinations of controlled directionality, measurable environmental interaction, technical feasibility and suitability for future training and simulation applications.

Your profile

The project is suitable for one student with an interest in applied physics, mathematical modelling and experimental research. You are in the final stage of Engineering Physics or an equivalent program and are about to begin a 30 hp thesis project.

Experience with MATLAB, Python, Ansys or similar modelling and simulation tools is considered an advantage. Experience with experimental measurements, RF technology, antennas, radar, acoustics, ultrasound, optics or other sensor technologies is also beneficial.

Please include your university grades with your application.

We provide the support and guidance you need to translate your theoretical knowledge into practical solutions. Join us and become a driving force behind Saab's technological advancements!

This position requires that you pass a security vetting based on the current regulations around/of security protection. For positions requiring security clearance additional obligations on citizenship may apply.

Kindly observe that this is an ongoing recruitment process and that the position might be filled before the closing date of the advertisement.

Contact information

Oscar Gunnarsson, Manager

[email protected]

What you will be a part of

Explore a wealth of possibilities. Take on challenges, create smart inventions, and grow beyond. This is a place for curious minds, brave pioneers, and everyone in between. Together, we achieve the extraordinary, each bringing our unique perspectives. Your part matters.

Saab is a leading defense and security company with an enduring purpose, to help nations keep their people and society safe. Empowered by its 28,000 talented people, Saab constantly pushes the boundaries of technology to create a safer and more sustainable world.

Saab designs, manufactures and maintains advanced systems in aeronautics, weapons, command and control, sensors and underwater systems. Saab is headquartered in Sweden. It has major operations all over the world and is part of the domestic defense capability of several nations. Read more about us here.