activity
20242026
collaborators
Showing eess.SPShow all

6 papers · 1 filter

eess.SP2026

Clustered Movable Pinching Antennas: Realizing Beamforming Gains and Target Diversity in ISAC Systems with Look-Angle-Dependent RCS

Ata Khalili, Brikena Kaziu, Vasilis K. Papanikolaou +1

We investigate a novel integrated sensing and communication (ISAC) system enabled by pinching antennas (PAs), which are dynamically activated along a dielectric waveguide. Unlike p…

eess.SP2025

Resolving the Double Near-Far Problem via Wireless Powered Pinching-Antenna Networks

Vasilis K. Papanikolaou, Gui Zhou, Brikena Kaziu +4

This letter introduces a novel wireless powered communication system, referred to as a wireless powered pinching-antenna network (WPPAN), utilizing a single waveguide with pinching…

eess.SP2025

Pinching Antenna-enabled ISAC Systems: Exploiting Look-Angle Dependence of RCS for Target Diversity

Ata Khalili, Brikena Kaziu, Vasilis K. Papanikolaou +1

We investigate a novel integrated sensing and communication (ISAC) system supported by pinching antennas (PAs), which can be dynamically activated along a dielectric waveguide to c…

eess.SP2025

Movable Antenna Enabled ISAC: Tackling Slow Antenna Movement, Dynamic RCS, and Imperfect CSI via Two-timescale Optimizati

Ata Khalili, Robert Schober

We investigate resource allocation for a movable antenna (MA) enabled integrated sensing and communication (ISAC) system scanning a sector for sensing and simultaneously serving mu…

eess.SP2024

Efficient UAV Hovering, Resource Allocation, and Trajectory Design for ISAC with Limited Backhaul Capacity

Ata Khalili, Atefeh Rezaei, Dongfang Xu +2

In this paper, we investigate the joint resource allocation and trajectory design for a multi-user, multi-target unmanned aerial vehicle (UAV)-enabled integrated sensing and commun…

eess.SP2024

Advanced ISAC Design: Movable Antennas and Accounting for Dynamic RCS

Ata Khalili, Robert Schober

We investigate resource allocation in integrated sensing and communication (ISAC) systems exploiting movable antennas (MAs) to enhance system performance. Unlike the existing ISAC…