Spatially Sparse Precoding in Millimeter Wave MIMO Systems
Qualcomm (United States) · Samsung (United States) · +2 more institutions
Abstract
Millimeter wave (mmWave) signals experience orders-of-magnitude more pathloss than the microwave signals currently used in most wireless applications and all cellular systems. MmWave systems must therefore leverage large antenna arrays, made possible by the decrease in wavelength, to combat pathloss with beamforming gain. Beamforming with multiple data streams, known as precoding, can be used to further improve mmWave spectral efficiency. Both beamforming and precoding are done digitally at baseband in traditional multi-antenna systems. The high cost and power consumption of mixed-signal devices in mmWave systems, however, make analog processing in the RF domain more attractive. This hardware limitation…
Citation impact
- FWCI
- 149.87
- Percentile
- 100%
- References
- 81
Authors
5- OEOmar El AyachCorresponding
Qualcomm (United States)
- SRSridhar Rajagopal
Samsung (United States), The University of Texas at Dallas
- SAShadi Abu‐Surra
The University of Texas at Dallas, Samsung (United States)
- ZPZhouyue Pi
The University of Texas at Dallas, Samsung (United States)
- RWRobert W. Heath
The University of Texas at Austin
Topics & keywords
- Precoding
- Beamforming
- Computer science
- MIMO
- Baseband
- Electronic engineering
- Transceiver
- Zero-forcing precoding
- Affordable and clean energy