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Low complexity Moore-Penrose inverse for large CoMP areas with sparse massive MIMO channel matrices.

, , , and . PIMRC, page 1-7. IEEE, (2016)

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In-band wireless backhaul for 5G millimeter wave cellular communications - interactive live demo.. INFOCOM Workshops, page 21-22. IEEE, (2015)Start Stop Bit Method for Efficient Data Communication in 6G Mobile Radio Systems., , , , and . CoRR, (2024)System level modeling of in-band wireless backhaul for 5G mmW., , , and . ISWCS, page 716-720. IEEE, (2015)Sub Tiling - a flexible CSI Reference Signal Concept for 5G New Radio Systems., , and . WSA, page 1-5. VDE / IEEE, (2018)Low complexity Moore-Penrose inverse for large CoMP areas with sparse massive MIMO channel matrices., , , and . PIMRC, page 1-7. IEEE, (2016)Information rates of precoding for massive MIMO and base station cooperation in an indoor scenario., , , and . EURASIP J. Wireless Comm. and Networking, 2020 (1): 22 (2020)Integrating 3D Channel Model and Grid of Beams for 5G mMIMO System Level Simulations., , , , and . VTC Fall, page 1-6. IEEE, (2016)Deployment and implementation strategies for massive MIMO in 5G., , , , , , and . GLOBECOM Workshops, page 346-351. IEEE, (2014)Scheduling conflicts in wireless in-band backhaul for 5G millimeter wave communications.. INFOCOM Workshops, page 110-111. IEEE, (2016)Performance Evaluation of 5G Sidelink Positioning., , , and . CSCN, page 177-182. IEEE, (2023)