most citedMinimum Length Scheduling for Discrete-Rate Full-Duplex Wireless Powered Communication Networks

1 citations · 1 across the 4 of their papers we have counts for

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6 papers

eess.SP2020

Federated Learning for Hybrid Beamforming in mm-Wave Massive MIMO

Ahmet M. Elbir, Sinem Coleri

Machine learning for hybrid beamforming has been extensively studied by using centralized machine learning (CML) techniques, which require the training of a global model with a lar…

eess.SP20201 cited

Minimum Length Scheduling for Discrete-Rate Full-Duplex Wireless Powered Communication Networks

Muhammad Shahid Iqbal, Yalcin Sadi, Sinem Coleri

In this paper, we consider a wireless powered communication network where multiple users with RF energy harvesting capabilities communicate to a hybrid energy and information acces…

eess.SP2020

Machine Learning Based Channel Modeling for Vehicular Visible Light Communication

Bugra Turan, Sinem Coleri

Optical Wireless Communication (OWC) propagation channel characterization plays a key role on the design and performance analysis of Vehicular Visible Light Communication (VVLC) sy…

cs.NI2020

Relay Selection, Scheduling and Power Control in Wireless Powered Cooperative Communication Networks

Aysun Gurur Onalan, Elif Dilek Salik, Sinem Coleri

Relay nodes are used to improve the throughput, delay and reliability performance of energy harvesting networks by assisting both energy and information transfer between informatio…

eess.SP2020

Empirical Feasibility Analysis for Energy Harvesting Intra-Vehicular Wireless Sensor Networks

Mertkan Koca, Gokhan Gurbilek, Burak Soner +1

Vehicle electronic systems currently utilize wired networks for power delivery (from the main battery) and communication (e.g., LIN, CAN, FlexRay) between nodes. Wired networks can…

eess.SP2020

Minimum Length Scheduling for Full Duplex Time-Critical Wireless Powered Communication Networks

Muhammad Shahid Iqbal, Yalcin Sadi, Sinem Coleri

Radio frequency (RF) energy harvesting is key in attaining perpetual lifetime for time-critical wireless powered communication networks due to full control on energy transfer, far…