collaborators

10 papers

eess.SP2026

Fluid Antenna-Enabled Hybrid NOMA and AirFL Networks Under Imperfect CSI and SIC

Saeid Pakravan, Mohsen Ahmadzadeh, Ming Zeng +2

The integration of communication and computation is essential for next-generation wireless systems, especially in scenarios demanding massive connectivity and ultra-low latency. Ov…

eess.SP2026

Performance Analysis of Fluid Antenna-Assisted Over-the-Air Federated Learning Under Spatially Correlated Fading

Mohsen Ahmadzadeh, Saeid Pakravan, Wessam Ajib +3

Fluid antenna (FA) technology has recently emerged as an effective means of exploiting spatial diversity through position-domain reconfigurability. This paper investigates the inte…

eess.SP2026

Copula-Based Analysis of Fluid Antenna-Assisted Over-the-Air Computation

Saeid Pakravan, Mohsen Ahmadzadeh, Wessam Ajib +2

This letter studies an uplink over-the-air computation (AirComp) framework in which multiple user equipments are equipped with fluid-antenna (FA) arrays and operate over spatially…

eess.SP2026

Robust Resource Allocation in RIS-Assisted Wireless Networks Integrating NOMA and Over-the-Air Federated Learning

Saeid Pakravan, Mohsen Ahmadzadeh, Ming Zeng +4

This paper addresses the critical issue of spectrum scarcity and the need to support diverse services, including communication and learning tasks, by presenting a reconfigurable in…

eess.SP2026

AI-Empowered Resource Allocation for Wirelessly Powered Pinching-Antenna Systems

Saeid Pakravan, Mohsen Ahmadzadeh, Ming Zeng +2

This paper considers a multi-user system, where the users first harvest energy from the base station and then use the harvested energy to transmit information via non-orthogonal mu…

cs.IT2026

Robust Single- and Multi-Pinching Antenna Systems Under User Location Uncertainty

Hao Feng, Ebrahim Bedeer, Ming Zeng +3

Pinching antenna (PA) systems have recently emerged as a promising architecture for reconfigurable wireless communications by enabling flexible antenna placement along a dielectric…