Sofia B Liljedahl
https://www.intramed.lu.se/en/sofia-b-liljedahl - 2026-06-18
Filtyp
https://www.intramed.lu.se/en/sofia-b-liljedahl - 2026-06-18
https://www.intramed.lu.se/en/sara-liedholm - 2026-06-18
https://www.intramed.lu.se/en/johanna-erlandson - 2026-06-18
https://www.intramed.lu.se/en/marike-hagstedt - 2026-06-18
https://www.intramed.lu.se/en/anna-mazurek - 2026-06-18
https://www.intramed.lu.se/en/marie-weidenholm - 2026-06-18
https://www.intramed.lu.se/en/kathryn-wellbaum - 2026-06-18
https://www.intramed.lu.se/en/sara-gert - 2026-06-18
https://www.intramed.lu.se/en/zeynab-ryahi - 2026-06-18
https://www.intramed.lu.se/en/sara-andrae - 2026-06-18
https://www.intramed.lu.se/en/anneli-karlsson - 2026-06-18
https://www.intramed.lu.se/en/caroline-westin - 2026-06-18
https://www.ai.lu.se/benjamin-weaver - 2026-06-18
https://www.ai.lu.se/pierre-klintefors - 2026-06-18
https://www.ai.lu.se/jaakko-salminen - 2026-06-18
Distributed multiple-input multiple-output (MIMO), also known as cell-free massive MIMO, emerges as a promising technology for sixth-generation (6G) systems to support uniform coverage and reliable communication. For the design and optimization of such systems, measurement-based investigations of real-world distributed MIMO channels are essential. In this paper, we present a sub-6 GHz indoor chann