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Abdelrahman Taha
ORCID
Publication Activity (10 Years)
Years Active: 2019-2023
Publications (10 Years): 11
Top Topics
Mimo Systems
Dense Depth Maps
Depth Estimation
Augmented Reality
Top Venues
CoRR
IEEE Access
ICC Workshops
ICC
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Publications
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Abdelrahman Taha
,
Hao Luo
,
Ahmed Alkhateeb
Reconfigurable Intelligent Surface Aided Wireless Sensing for Scene Depth Estimation.
ICC
(2023)
Abdelrahman Taha
,
Hao Luo
,
Ahmed Alkhateeb
Reconfigurable Intelligent Surface Aided Wireless Sensing for Scene Depth Estimation.
CoRR
(2022)
Abdelrahman Taha
,
Qi Qu
,
Sam Alex
,
Ping Wang
,
William L. Abbott
,
Ahmed Alkhateeb
Millimeter Wave MIMO-Based Depth Maps for Wireless Virtual and Augmented Reality.
IEEE Access
9 (2021)
Abdelrahman Taha
,
Qi Qu
,
Sam Alex
,
Ping Wang
,
William L. Abbott
,
Ahmed Alkhateeb
Millimeter Wave MIMO based Depth Maps for Wireless Virtual and Augmented Reality.
CoRR
(2021)
Abdelrahman Taha
,
Hussain Elkotby
,
Tanbir Haque
,
Ravikumar Pragada
,
Douglas R. Castor
Eliminating Battery Replacement Throughout the Useful Life of IoT Devices with Limited-Capacity Batteries: Analysis and Design of a Zero Energy Air Interface.
ICC Workshops
(2021)
Abdelrahman Taha
,
Muhammad Alrabeiah
,
Ahmed Alkhateeb
Enabling Large Intelligent Surfaces With Compressive Sensing and Deep Learning.
IEEE Access
9 (2021)
Abdelrahman Taha
,
Yu Zhang
,
Faris B. Mismar
,
Ahmed Alkhateeb
Deep Reinforcement Learning for Intelligent Reflecting Surfaces: Towards Standalone Operation.
SPAWC
(2020)
Abdelrahman Taha
,
Ahmed Alkhateeb
Situation-Aware Channel Covariance Prediction for Deep Learning Aided Massive MIMO Systems.
ACSSC
(2020)
Abdelrahman Taha
,
Yu Zhang
,
Faris B. Mismar
,
Ahmed Alkhateeb
Deep Reinforcement Learning for Intelligent Reflecting Surfaces: Towards Standalone Operation.
CoRR
(2020)
Abdelrahman Taha
,
Muhammad Alrabeiah
,
Ahmed Alkhateeb
Deep Learning for Large Intelligent Surfaces in Millimeter Wave and Massive MIMO Systems.
GLOBECOM
(2019)
Abdelrahman Taha
,
Muhammad Alrabeiah
,
Ahmed Alkhateeb
Enabling Large Intelligent Surfaces with Compressive Sensing and Deep Learning.
CoRR
(2019)