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From the 1 of 21 linked papers with an AI index.

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20242026
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21 papers

cs.NI2026

WALoMA: A Multitask Wireless Foundation Model via Adaptive Low-Rank Masked Autoencoders

Madi Makin, Asmaa Abdallah, Abdulkadir Celik +1

The paper introduces WALoMA, a multitask wireless foundation model that uses adaptive low-rank masked autoencoders to learn self-supervised representations of channel state informa…

eess.SP2026

Sparse Array Design for Near-Field MU-MIMO: Reconfigurable Array Thinning Approach

Ahmed Hussain, Asmaa Abdallah, Abdulkadir Celik +2

Future wireless networks, deploying thousands of antenna elements, may operate in the radiative near-field (NF), enabling spatial multiplexing across both angle and range domains.…

cs.MA2026

Enwar 3.0: An Agentic Multi-Modal LLM Orchestrator for Situation-Aware Beamforming, Blockage Prediction, and Handover Management

Ahmad M. Nazar, Abdulkadir Celik, Asmaa Abdallah +3

Maintaining robust millimeter-wave (mmWave) connectivity in vehicular networks requires real-time adaptation to environmental dynamics, sensor degradation, and link variability. Th…

eess.SP2026

Uniform Circular Arrays in Near-Field: Omnidirectional Coverage with Limited Capacity

Ahmed Hussain, Asmaa Abdallah, Abdulkadir Celik +1

Recent studies suggest that uniform circular arrays (UCAs) can extend the angular coverage of the radiative near field region. This work investigates whether such enhanced angular…

cs.IT2026

Boosting Spectral Efficiency via Spatial Path Index Modulation in RIS-Aided mMIMO

Ahmet M. Elbir, Abdulkadir Celik, Asmaa Abdallah +1

Next generation wireless networks focus on improving spectral efficiency (SE) while reducing power consumption and hardware cost. Reconfigurable intelligent surfaces (RISs) offer a…

eess.SP2026

Array Geometry-Centric Axial Sidelobe Interference Analysis for Near-Field Multi-User MIMO

Ahmed Hussain, Asmaa Abdallah, Abdulkadir Celik +1

With the deployment of large antenna arrays at high-frequency bands, future wireless communication systems are likely to operate in the radiative near-field (NF). Unlike far-field…