Shengli Zhou
Assoc Dept Head & Professor/Electrical and Computer Engr
Storrs Mansfield
Are you Shengli Zhou?
How to update your information.
Scholarly Contributions
151 Scholarly Contributions
Low-Complexity Precoding by Exploiting Spatial Sparsity in Massive MIMO Systems
2022
Research Type: Journal Article
Low-complexity variational Bayesian inference based groupwise detection for massive MIMO uplinks
2023
Research Type: Journal Article
MIMO radar detection with heterogeneous propagation losses.
2024
Research Type: Conference Proceedings
Millimeter-Wave Resonant Beam SWIPT
2024
Research Type: Journal Article
https://dx.doi.org/10.1109/JIOT.2024.3452121
Mobile Optical Communications Using Second Harmonic of Intra-Cavity Laser
2022
Research Type: Journal Article
Mobility-enhanced simultaneous lightwave information and power transfer
2021
Research Type: Journal Article
Multimedia Messaging with Underwater Acoustic Wireless Networks
2011
Research Type: Poster/Presentation
Multipoint Transmission Scheduling in an Underwater Distributed Antenna System
2015
Research Type: Other Scholarly Work
Multistatic Target Tracking for Passive Radar in a DAB/DVB Network: Initiation
2015
Research Type: Journal Article
NAMS: A Networked Acoustic Modem System for Underwater Applications
2011
Research Type: Conference Proceedings
Network Coding based Transmission Schemes in DTNs with Group Meetings
2015
Research Type: Conference Proceedings
Nonbinary Multiple Rate QC-LDPC Codes With Fixed Information or Block Bit Length
2012
Research Type: Journal Article
Nonlinear Observation Models With Additive Gaussian Noises and Efficient MLEs
2017
Research Type: Journal Article
OFDM modulated dynamic coded cooperation in underwater acoustic channels
2015
Research Type: Journal Article
Ocean-TUNE: A Community Ocean Testbed for Underwater Wireless Networks
2024
Research Type: Conference Proceedings
On Fisher Information Reduction for Range-only Localization with Imperfect Detection
2012
Research Type: Journal Article
On Parameter Estimation of A Swerling IV Target With Gaussian Receiver Noise
Research Type: Conference Proceedings