"Interference-floor shaping for liquid coverage zones in coordinated 5G networks"
Title | "Interference-floor shaping for liquid coverage zones in coordinated 5G networks" |
Publication Type | Conference Paper |
Year of Publication | 2015 |
Authors | L. Thiele, M. Kurras, S. Jaeckel, S. Fähse, W. Zirwas |
Conference Name | 2015 49th Asilomar Conference on Signals, Systems and Computers |
Date Published | Nov |
Publisher | IEEE |
ISBN Number | 978-1-4673-8576-3 |
Accession Number | 15821296 |
Keywords | 5G mobile communication, adjacent channel interference, antennas, channel components, Channel estimation, channel prediction, CoMP, coordinated 5G networks, destructive superposition, Geometry, Interference, interference-floor shaping, joint transmission coordinated multipoint, liquid coverage zones, Multiplexing, pubcrawl170103, Time-frequency Analysis |
Abstract | Joint transmission coordinated multi-point (CoMP) is a combination of constructive and destructive superposition of several to potentially many signal components, with the goal to maximize the desired receive-signal and at the same time to minimize mutual interference. Especially the destructive superposition requires accurate alignment of phases and amplitudes. Therefore, a 5G clean slate approach needs to incorporate the following enablers to overcome the challenging limitation for JT CoMP: accurate channel estimation of all relevant channel components, channel prediction for time-aligned precoder design, proper setup of cooperation areas corresponding to user grouping and to limit feedback overhead especially in FDD as well as treatment of out-of-cluster interference (interference floor shaping). |
URL | http://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=7421310&isnumber=7421038 |
DOI | 10.1109/ACSSC.2015.7421310 |
Citation Key | 7421310 |
- destructive superposition
- Time-frequency Analysis
- pubcrawl170103
- Multiplexing
- liquid coverage zones
- joint transmission coordinated multipoint
- interference-floor shaping
- Interference
- Geometry
- 5G mobile communication
- coordinated 5G networks
- CoMP
- channel prediction
- Channel estimation
- channel components
- antennas
- adjacent channel interference