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Contact

Staff All staff members' contact details can be found on the Staff page. Management Head of DepartmentStefan Höststefan [dot] host [at] eit [dot] lth [dot] se (stefan[dot]host[at]eit[dot]lth[dot]se)+46 46 222 42 78Assistant Head of DepartmentMaria Kihlmaria [dot] kihl [at] eit [dot] lth [dot] se (maria[dot]kihl[at]eit[dot]lth[dot]se)+46 46 222 90 10Deputy Head of DepartmentBuon Kiong Laubuon_kiong

https://www.eit.lth.se/en/contact - 2026-10-01

Start

Welcome to the Division of Industrial Electrical Engineering and Automation (IEA) The Division of Industrial Electrical Engineering and Automation (IEA) offers a number of courses in industrial electrical engineering and automation both in Lund for several Engineering programmes and at Campus Helsingborg for the programme in Electrical Engineering and Automation. More about the division Education

https://www.iea.lth.se/en/start - 2026-10-01

Electric power systems

The electric power system plays a central role in the transition to a sustainable energy system: Electric power based on renwable sources permits an increase in electricity consumption to eliminate fossil fuels. This brings large challenges to the electric power system in terms of adaptation to the variable production from wind power and solar electricity. These electricity sources are grid connec

https://www.iea.lth.se/en/research/electric-power-systems - 2026-10-01

Electrical drive systems

Power electronics are used to convert and control electrical power in many different ways, and can be said to be a cornerstone of almost all electrical energy management. For example, power electronics are used to efficiently convert voltage and current from solar cells or wind turbines into a form suitable for transmission over large distances. Power electronics are used to convert 3-phase AC vol

https://www.iea.lth.se/en/research/electrical-drive-systems - 2026-10-01

Wastewater treatment

Efficient and reliable water and wastewater systems have been a major challenge for Swedish municipalities and authorities for several decades. High-performing and cost-effective treatment plants and pipe networks continuously free Swedish waterways from harmful discharges. The water and wastewater industry in Sweden has a good international reputation and competes successfully on the internationa

https://www.iea.lth.se/en/research/wastewater-treatment - 2026-10-01

About

The Division of Industrial Electrical Engineering and Automation (IEA) offers a number of courses in industrial electrical engineering and automation both in Lund for several Engineering programmes and at Campus Helsingborg for the programme in Electrical Engineering and Automation. IEA focuses on applications in Energy and Environment with courses and research in renewable energy generation (wind

https://www.iea.lth.se/en/about - 2026-10-01

Electrification

Electrification usually implies more than just swapping fuels or components and must be studied at a system level to ensure reliable, robust and resilient operation. Renewable electricity appears as the most promising alternative to replace fossil fuels in most applications in order to reduce GHG emissions. Moreover, it constitutes a virtually unlimited resource that is present in some form almost

https://www.iea.lth.se/en/research/electrification - 2026-10-01

Education

IEA offers a number of courses in industrial electrical engineering and automation both in Lund (for several 5-year engineering programmes) and at Campus Helsingborg for the 3-year engineering programme in Electrical Engineering with Automation (lth.se, in Swedish).Links to course plans open on Course website LTH. Links to more in-depth information open in Canvas. Compulsory courses in Lund Electr

https://www.iea.lth.se/en/education - 2026-10-01

Research

Electric power systems Existing and new technologies are used to provide a secure, reliable and resource-efficient electricity supply. The key issue is how power outages occur - how they can be prevented and how the consequences can be mitigated. Electrical drive systems Power electronic drive systems - Power electronics are used to control motors and multi-kilowatt power units. The IEA is develop

https://www.iea.lth.se/en/research - 2026-10-01

Contact

Postal addressIndustrial Electrical Engineering and Automation (IEA)M-huset, LTH, Faculty of EngineeringBox 118, 221 00 LUNDSwedenVisiting addressIndustrial Electrical Engineering and Automation (IEA)M-huset, Ole Römers väg 1223 62 LUNDDelivery addressIndustrial Electrical Engineering and Automation (IEA)LTH, Faculty of EngineeringOle Römers väg 1A/B/C/D/E/F, 223 63 LUND, Sweden E-mail & phone +46

https://www.iea.lth.se/en/contact - 2026-10-01

Start

Security threats and risks in today’s society are becoming increasingly difficult to predict and can change rapidly. Our researchers address society’s growing need for preparedness, situational awareness, and risk analysis. The Centre for Preparedness and Resilience (LUPREP) is a collaborative initiative across all nine faculties at Lund University, focusing on total defence issues. Visit Swedish

https://www.luprep.lu.se/en/start - 2026-10-01

Contact

DirectorJohan Bergström+46 70 556 33 69johan [dot] bergstrom [at] risk [dot] lth [dot] se (johan[dot]bergstrom[at]risk[dot]lth[dot]se) Collaboration CoordinatorLollo Pierce+46 72 519 66 24lollo [dot] pierce [at] lth [dot] lu [dot] se (lollo[dot]pierce[at]lth[dot]lu[dot]se)CommunicationsLinus Edlund+46 72 888 04 42linus [dot] edlund [at] sam [dot] lu [dot] se (linus[dot]edlund[at]sam[dot]lu[dot]se)

https://www.luprep.lu.se/en/contact - 2026-10-01

About

The Centre for Preparedness and Resilience (LUPREP) is a university-wide centre that brings together research, education, and collaboration in the fields of total defence, societal preparedness, and resilience. Centre for Preparedness and Resilience was established in April 2025 with the aim of creating a cohesive academic environment that strengthens society’s ability to respond to crises, transi

https://www.luprep.lu.se/en/about - 2026-10-01

Covers & Highlights

For many double stranded (ds) DNA viruses the viral genome is actively packaged into the virus capsid by a powerful molecular motor. This results in an energetically unfavorable state of the packaged genome, creating tens of atmospheres internal pressure inside the virion. Using a new calorimetric assay to determine the activation energy barriers associated with genome loss in response to elevated

https://www.virus-biophysics.lu.se/covers-highlights-0 - 2026-10-01

Covers, Movies and Highlights

 For many double stranded (ds) DNA viruses the viral genome is actively packaged into the virus capsid by a powerful molecular motor. This results in an energetically unfavorable state of the packaged genome, creating tens of atmospheres internal pressure inside the virion. Using a new calorimetric assay to determine the activation energy barriers associated with genome loss in response to elevate

https://www.virus-biophysics.lu.se/covers-movies-and-highlights - 2026-10-01

Open positions

ALEX EVILEVITCH RESEARCH GROUP We are always interested in reviewing applications from MSc students, prospective PhD students and postdocs.   Project description    Herpesviruses are a leading cause of human viral disease. Herpesviruses consist of a double-stranded DNA genome contained within a protein shell, termed the capsid, that is surrounded by an unstructured protein layer and a lipid-envelo

https://www.virus-biophysics.lu.se/open-positions-0 - 2026-10-01

Research Overview

Virus Biophysics Virus Biophysics is a rather new field that seeks to define the physical mechanisms controlling virus development. This knowledge can provide information essential to the rational design of new antiviral strategies with less specificity for a limited number of viruses. Furthermore, biological and physical simplicity relative to other biological systems have made viruses an attract

https://www.virus-biophysics.lu.se/research-overview - 2026-10-01

Homepage

News and Events January 9, 2024 , Physics World "Viruses change structure at the temperature of the human body to better infect us". If you want to know in simple words a possible mechanism of viral genome delivery, read more in this link (it opens a new webpage).November 8, 2023,  Lund University press release on our pioneering study published in PNAS showing how temperature triggers release of v

https://www.virus-biophysics.lu.se/node/137 - 2026-10-01