Per Ängskog is a University Lecturer and Deputy Head of the Department of Electrical Engineering, Mathematics and Natural Sciences at Gävle University. His research focuses on electromagnetic compatibility, wireless communication systems in industrial environments, and high-power microwave effects on materials. He has extensive experience in characterizing signal propagation in challenging environments like tunnels and industrial facilities, with notable contributions to shielding effectiveness studies of energy-saving materials. His work emphasizes practical applications in infrastructure resilience against intentional electromagnetic interference (IEMI) and improving wireless communication reliability in complex settings. Key research areas include: Electromagnetic vulnerability analysis of infrastructure systems Wireless M2M communication challenges in industrial environments High-frequency signal propagation (e.g., mmWave in steel industries) Material electromagnetic properties characterization IEMI mitigation strategies for autonomous vehicles Publications highlight advancements in measurement systems (e.g., triboelectric noise meters) and shielding effectiveness evaluations for modern architectural materials. His work has been presented at IEEE conferences and published in journals like IEEE Transactions on Electromagnetic Compatibility and IEEE Transactions on Antennas and Propagation. Recent trends in his articles focus on industrial automation challenges, mmWave technology applications, and infrastructure security against electromagnetic threats. He actively contributes to international symposiums on electromagnetic compatibility and industrial communication systems. No scientific awards are explicitly mentioned. His advising and grants involve collaborative projects on measurement methodologies and material vulnerability assessments. He is involved in educational initiatives to improve engineering program attractiveness at lower academic levels. Labs/teams: His work is conducted through Gävle University's electrical engineering facilities, collaborating with industry partners on real-world testing scenarios.











