Pinching-Antenna Systems (PASS): A Tutorial
2025/08/11 by Liu, Yuanwei, Jiang, Hao, Xu, Xiaoxia +8 · 28 citations
#FOS: Electrical engineering #Signal Processing (eess.SP) #electronic engineering #information engineering
paper · doi:10.48550/arxiv.2508.07572
Abstract
Pinching antenna systems (PASS) present a breakthrough among the flexible-antenna technologies, and distinguish themselves by facilitating large-scale antenna reconfiguration, line-of-sight creation, scalable implementation, and near-field benefits, thus bringing wireless communications from the last mile to the last meter. A comprehensive tutorial is presented in this paper. First, the fundamentals of PASS are discussed, including PASS signal models, hardware models, power radiation models, and pinching antenna activation methods. Building upon this, the information-theoretic capacity limits achieved by PASS are characterized, and several typical performance metrics of PASS-based communications are analyzed to demonstrate its superiority over conventional antenna technologies. Next, the pinching beamforming design is investigated. The corresponding power scaling law is first characterized. For the joint transmit and pinching design in the general multiple-waveguide case, 1) a pair of transmission strategies is proposed for PASS-based single-user communications to validate the superiority of PASS, namely sub-connected and fully connected structures; and 2) three practical protocols are proposed for facilitating PASS-based multi-user communications, namely waveguide switching, waveguide division, and waveguide multiplexing. A possible implementation of PASS in wideband communications is further highlighted. Moreover, the channel state information acquisition in PASS is elaborated with a pair of promising solutions. To overcome the high complexity and suboptimality inherent in conventional convex-optimization-based approaches, machine-learning-based methods for operating PASS are also explored, focusing on selected deep neural network architectures and training algorithms. Finally, several promising applications of PASS in next-generation wireless networks are highlighted.
Citations
- Dual-Scale Antenna Deployment for Pinching Antenna Systems
- Pinching-Antenna Assisted Sensing: A Bayesian Cramér-Rao Bound Perspective
- Uplink and Downlink Communications in Segmented Waveguide-Enabled Pinching-Antenna Systems (SWANs)
- Pinching Antenna System (PASS) Enhanced Covert Communications: Against Warden via Sensing
- Multiport Network Modeling and Optimization for Reconfigurable Pinching-Antenna Systems
- Pinching-Antenna Systems-Enabled Multi-User Communications: Transmission Structures and Beamforming Optimization
- Robust Resource Allocation for Pinching-Antenna Systems under Imperfect CSI
- Deep Learning Optimization of Two-State Pinching Antennas Systems
- When Attention is Beneficial for Learning Wireless Resource Allocation Efficiently?
- Pinching-Antenna Systems with In-Waveguide Attenuation: Performance Analysis and Algorithm Design
- Capacity Characterization of Pinching-Antenna Systems
- Multiuser Beamforming for Pinching-Antenna Systems: An Element-wise Optimization Framework
- Joint Beamforming for NOMA Assisted Pinching Antenna Systems (PASS)
- Extremely Large-Scale Movable Antenna-Enabled Multiuser Communications: Modeling and Optimization
- Wireless Communication for Low-Altitude Economy with UAV Swarm Enabled Two-Level Movable Antenna System
- Frequency-Selective Modeling and Analysis for OFDM-Integrated Wideband Pinching-Antenna Systems
- Rate Region of ISAC for Pinching-Antenna Systems
- Cramér-Rao Bounds for Integrated Sensing and Communications in Pinching-Antenna Systems
- Pinching-Antenna Systems (PASS): Power Radiation Model and Optimal Beamforming Design
- Energy Efficient Wireless Communications by Harnessing Huygens' Metasurfaces
- Pinching-Antenna Systems (PASS)-enabled Secure Wireless Communications
- Pinching-Antenna System (PASS) Enhanced Covert Communications
- Secrecy Rate Maximization with Artificial Noise for Pinching-Antenna Systems
- Channel Estimation for mmWave Pinching-Antenna Systems
- Integrated Sensing and Communications for Pinching-Antenna Systems (PASS)
- Pinching-Antenna Assisted ISAC: A CRLB Perspective
- Channel Estimation for Pinching-Antenna Systems (PASS)
- LoS Blockage in Pinching-Antenna Systems: Curse or Blessing?
- Physical Layer Security for Pinching-Antenna Systems (PASS)
- MIMO-PASS: Uplink and Downlink Transmission via MIMO Pinching-Antenna Systems
- Waveguide Division Multiple Access for Pinching-Antenna Systems (PASS)
- A Tutorial on Movable Antennas for Wireless Networks
- Rate Maximization for Downlink Pinching-Antenna Systems
- Joint Transmit and Pinching Beamforming for Pinching Antenna Systems (PASS): Optimization-Based or Learning-Based?
- Performance Analysis of Pinching-Antenna Systems
- Beam Training for Pinching-Antenna Systems (PASS)
- Modeling and Beamforming Optimization for Pinching-Antenna Systems
- GPASS: Deep Learning for Beamforming in Pinching-Antenna Systems (PASS)
- Pinching-Antenna Systems (PASS): Architecture Designs, Opportunities, and Outlook
- Pinching Antennas: Principles, Applications and Challenges
- Array Gain for Pinching-Antenna Systems (PASS)
- Antenna Activation for NOMA Assisted Pinching-Antenna Systems
- Flexible-Antenna Systems: A Pinching-Antenna Perspective
- CAPA: Continuous-Aperture Arrays for Revolutionizing 6G Wireless Communications
- Movable Antenna Enabled Near-Field Communications: Channel Modeling and Performance Optimization
- Enabling 6G Performance in the Upper Mid-Band by Transitioning From Massive to Gigantic MIMO
- A Tutorial on Fluid Antenna System for 6G Networks: Encompassing Communication Theory, Optimization Methods and Hardware Designs
- Near-Field Localization and Sensing with Large-Aperture Arrays: From Signal Modeling to Processing
- The Integrated Sensing and Communication Revolution for 6G: Vision, Techniques, and Applications
- 6D Movable Antenna Enhanced Wireless Network Via Discrete Position and Rotation Optimization
- 6D Movable Antenna Based on User Distribution: Modeling and Optimization
- Near-Field Communications: A Comprehensive Survey
- Historical Review of Fluid Antenna and Movable Antenna
- Movable Antennas for Wireless Communication: Opportunities and Challenges
- Movable Antennas for Wireless Communication: Opportunities and Challenges
- Integrated Sensing and Communications: Recent Advances and Ten Open Challenges
- On the Road to 6G: Visions, Requirements, Key Technologies and Testbeds
- On the Road to 6G: Visions, Requirements, Key Technologies, and Testbeds
- Near-Field MIMO Communications for 6G: Fundamentals, Challenges, Potentials, and Future Directions
- Fast Beam Alignment via Pure Exploration in Multi-armed Bandits
- Super-Wideband Massive MIMO
- Terahertz Wireless Channels: A Holistic Survey on Measurement, Modeling, and Analysis
- Integrated Sensing and Communications: Towards Dual-functional Wireless Networks for 6G and Beyond
- Integrated Sensing and Communications: Toward Dual-Functional Wireless Networks for 6G and Beyond
- Learning Site-Specific Probing Beams for Fast mmWave Beam Alignment
- Wavenumber-Division Multiplexing in Line-of-Sight Holographic MIMO Communications
- The Road Towards 6G: A Comprehensive Survey
- Towards 6G wireless communication networks: vision, enabling technologies, and new paradigm shifts
- Intelligent Reflecting Surface Aided Multi-User Communication: Capacity Region and Deployment Strategy
- Graph Neural Networks for Scalable Radio Resource Management: Architecture Design and Theoretical Analysis
- Reconfigurable Intelligent Surfaces: Principles and Opportunities
- Reconfigurable Intelligent Surfaces: Principles and Opportunities
- Intelligent Reflecting Surface Aided Wireless Communications: A Tutorial
- Intelligent Reflecting Surface-Aided Wireless Communications: A Tutorial
- Dynamic Metasurface Antennas for 6G Extreme Massive MIMO Communications
- A Vision to Smart Radio Environment: Surface Wave Communication Superhighways
- Performance Limits of Fluid Antenna Systems
- Fluid Antenna Systems
- What should 6G be?
- Intelligent Reflecting Surface Enhanced Wireless Network via Joint Active and Passive Beamforming
- Online Learning for Position-Aided Millimeter Wave Beam Training
- Fractional Programming for Communication Systems—Part I: Power Control and Beamforming
- Mobile Unmanned Aerial Vehicles (UAVs) for Energy-Efficient Internet of Things Communications
- Massive MIMO for next generation wireless systems
- A Tractable Approach to Coverage and Rate in Cellular Networks
- Antenna selection in MIMO systems
- Wireless large AI model: shaping the AI-empowered future of 6G and beyond
- A Comprehensive Survey on Graph Neural Networks
Cited by
Related