Sort by
Refine Your Search
-
Listed
-
Category
-
Employer
-
Field
-
strengthen multi-time scale controller coordination between Automatic Voltage Regulators (AVRs) and power electronic converters, enhancing resilience and adaptive control to improve system stability under
-
on demonstrated ability to integrate software, electronics, sensors, and mechanical systems into functioning prototypes Personal characteristics To complete a doctoral degree (PhD), it is important that you are
-
better problem solving of our societal mission in research and education. If you think this position is relevant and interesting, we encourage you to apply, regardless of gender, functional ability and
-
are seeking a candidate with strong expertise in high voltage engineering, hands-on laboratory experience, and a proven ability to contribute to both experimental work and research development within an active
-
of the Software Engineering unit. About the project Software is today prominent in many critical systems and infrastructures, such as power distribution systems, railway infrastructure, or flight control systems
-
, Applied and Industrialized Nuclear Technology, which supports the launch of 2-3 nuclear powered demonstration ships in the early 2030s. Within the SAINT project, you will work in Work package 5. Controlling
-
the Cortex (https://www.ntnu.edu/kavli/centre-for-algorithms-in-the-cortex) will be funded for 10 years by the Norwegian Research Council. The scientific goal of the Kavli Institute for Systems Neuroscience
-
of gender, functional ability and cultural background, or whether you have been out of work for a period of time. At NTNU we want to increase the proportion of women in scientific positions. We have a number
-
26 Aug 2026 Job Information Organisation/Company NTNU Norwegian University of Science and Technology Department Department of Electronic Systems Research Field Computer science Researcher Profile
-
implementation can introduce vulnerabilities that are not visible at the algorithmic level. Sensitive information may leak through power consumption, electromagnetic emissions, timing behaviour, memory or bus