Technical Program
SPCOM-P1: MIMO Communications |
Session Type: Poster |
Time: Tuesday, March 7, 08:30 - 10:30 |
Location: Churchill: Poster Area E |
Session Chair: Wei Yu, Univ. of Toronto |
SPCOM-P1.1: ASYMPTOTIC ANALYSIS OF MULTICELL MASSIVE MIMO OVER RICIAN FADING CHANNELS |
Luca Sanguinetti; University of Pisa |
Abla Kammoun; King Abdullah University of Science and Technology |
Merouane Debbah; CentraleSupélec |
SPCOM-P1.2: DISTRIBUTED SUM RATE MAXIMIZATION ALGORITHMS FOR NONREGENERATIVE MIMO RELAY NETWORKS |
Cong Sun; Beijing University of Posts and Telecommunications |
Eduard Jorswieck; Technische Universität Dresden |
SPCOM-P1.3: PILOT PRECODING AND COMBINING IN MULTIUSER MIMO NETWORKS |
Nima Najari Moghadam; KTH Royal Institute of Technology |
Hossein Shokri-Ghadikolaei; KTH Royal Institute of Technology |
Gabor Fodor; KTH Royal Institute of Technology, Ericsson Research |
Mats Bengtsson; KTH Royal Institute of Technology |
Carlo Fischione; KTH Royal Institute of Technology |
SPCOM-P1.4: SIGNALLING-OPTIMAL BEAMFORMER FOR MULTIUSER MISO BROADCAST VISIBLE LIGHT COMMUNICATIONS |
Yan-Yu Zhang; National Digital Switching System Engineering and Technological Research Center |
Hong-Yi Yu; National Digital Switching System Engineering and Technological Research Center |
Jian-Kang Zhang; McMaster University |
SPCOM-P1.5: PERFORMANCE ANALYSIS OF (TDD) MASSIVE MIMO WITH KALMAN CHANNEL PREDICTION |
Salil Kashyap; Linköping University |
Christopher Mollén; Linköping University |
Emil Björnson; Linköping University |
Erik G. Larsson; Linköping University |
SPCOM-P1.6: ROBUST MIMO OFDM TRANSMIT BEAMFORMER DESIGN FOR LARGE DOPPLER SCENARIOS UNDER PARTIAL CSIT |
Kalyana Gopala; Eurecom |
Dirk Slock; Eurecom |
SPCOM-P1.7: EXPLOITING MUTUAL COUPLING BY MEANS OF ANALOG-DIGITAL ZERO FORCING |
Ang Li; University College London |
Christos Masouros; University College London |
SPCOM-P1.8: OPTIMAL TRANSMIT STRATEGY FOR MIMO CHANNELS WITH JOINT SUM AND PER-ANTENNA POWER CONSTRAINTS |
Phuong Cao; KTH Royal Institute of Technology |
Tobias Oechtering; KTH Royal Institute of Technology |