Cross Far- and Near-Field Beam Management Technologies in Millimeter-Wave and Terahertz MIMO Systems
2025/04/26 by Yuhang Chen, Chen, Yuhang, Heyin Shen +3 · 1 citation
Engineering · #Millimeter-Wave Propagation and Modeling #Advanced MIMO Systems Optimization #Advanced Wireless Communication Technologies
paper · pdf · doi:10.48550/arxiv.2504.18855
Abstract
The evolution of wireless communication toward next-generation networks introduces unprecedented demands on data rates, latency, and connectivity. To meet these requirements, two key trends have emerged: the use of higher communication frequencies to provide broader bandwidth, and the deployment of massive multiple-input multiple-output systems with large antenna arrays to compensate for propagation losses and enhance spatial multiplexing. These advancements significantly extend the Rayleigh distance, enabling near-field (NF) propagation alongside the traditional far-field (FF) regime. As user communication distances dynamically span both FF and NF regions, cross-field (CF) communication has also emerged as a practical consideration. Beam management (BM)-including beam scanning, channel state information estimation, beamforming, and beam tracking-plays a central role in maintaining reliable directional communications. While most existing BM techniques are developed for FF channels, recent works begin to address the unique characteristics of NF and CF regimes. This survey presents a comprehensive review of BM techniques from the perspective of propagation fields. We begin by building the basic through analyzing the modeling of FF, NF, and CF channels, along with the associated beam patterns for alignment. Then, we categorize BM techniques by methodologies, and discuss their operational differences across propagation regimes, highlighting how field-dependent channel characteristics influence design tradeoffs and implementation complexity. In addition, for each BM method, we identify open challenges and future research directions, including extending FF methods to NF or CF scenarios, developing unified BM strategies for field-agnostic deployment, and designing low-overhead BM solutions for dynamic environments.
Citations
- Hybrid Beamforming with Widely-spaced-array for Multi-user Cross-Near-and-Far-Field Communications
- Dynamic Hybrid Beamforming Designs for ELAA Near-Field Communications
- Hybrid Near-Far Field Channel Estimation for Holographic MIMO Communications
- Near-field Beam Training with Sparse DFT Codebook
- Near-Field Beam Tracking with Extremely Large Dynamic Metasurface Antennas
- Adaptive TTD Configurations for Near-Field Communications: An Unsupervised Transformer Approach
- Near-Field Multiuser Beam-Training for Extremely Large-Scale MIMO Systems
- Near-Field Communications: A Comprehensive Survey
- Towards 6G MIMO: Massive Spatial Multiplexing, Dense Arrays, and Interplay Between Electromagnetics and Processing
- Coded Beam Training
- Dynamic MIMO Architecture Design for Near-Field Communications
- Far- and Near-Field Channel Measurements and Characterization in the Terahertz Band Using a Virtual Antenna Array
- Can Far-field Beam Training Be Deployed for Cross-field Beam Alignment in Terahertz UM-MIMO Communications?
- Beam Training and Tracking for Extremely Large-Scale MIMO Communications
- A Tutorial on Near-Field XL-MIMO Communications Towards 6G
- How to Differentiate between Near Field and Far Field: Revisiting the Rayleigh Distance
- A Tutorial on Extremely Large-Scale MIMO for 6G: Fundamentals, Signal Processing, and Applications
- Cross-Field Channel Estimation for Ultra Massive-MIMO THz Systems
- Wavefront Engineering: Realizing Efficient Terahertz Band Communications in 6G and Beyond
- Near-Field Channel Estimation for Extremely Large-Scale Reconfigurable Intelligent Surface (XL-RIS)-Aided Wideband mmWave Systems
- Two-Stage Hierarchical Beam Training for Near-Field Communications
- Cross Far- and Near-field Wireless Communications in Terahertz Ultra-large Antenna Array Systems
- Near-Field MIMO Communications for 6G: Fundamentals, Challenges, Potentials, and Future Directions
- Hierarchical Beam Training for Extremely Large-Scale MIMO: From Far-Field to Near-Field
- Two-Timescale Joint Precoding Design and RIS Optimization for User Tracking in Near-Field MIMO Systems
- Low-overhead Beam Training Scheme for Extremely Large-Scale RIS in Near-field
- Fast Near-Field Beam Training for Extremely Large-Scale Array
- Deep Learning Based Beam Training for Extremely Large-Scale Massive MIMO in Near-Field Domain
- Towards Intelligent Millimeter and Terahertz Communication for 6G: Computer Vision-aided Beamforming
- Multiple access for near-field communications: SDMA or LDMA?
- Terahertz Communications for 6G and Beyond Wireless Networks: Challenges, Key Advancements, and Opportunities
- Computer Vision-Aided Reconfigurable Intelligent Surface-Based Beam Tracking: Prototyping and Experimental Results
- Hybrid Spherical- and Planar-Wave Channel Modeling and Estimation for Terahertz Integrated UM-MIMO and IRS Systems
- Hybrid Far- and Near-Field Channel Estimation for THz Ultra-Massive MIMO via Fixed Point Networks
- Near-Field Rainbow: Wideband Beam Training for XL-MIMO
- Dynamic-subarray with Fixed Phase Shifters for Energy-efficient Terahertz Hybrid Beamforming under Partial CSI
- 6G Wireless Communications: From Far-field Beam Steering to Near-field Beam Focusing
- 6G Wireless Communications: From Far-Field Beam Steering to Near-Field Beam Focusing
- Energy-efficient Dynamic-subarray with Fixed True-time-delay Design for Terahertz Wideband Hybrid Beamforming
- Event-Based Beam Tracking with Dynamic Beamwidth Adaptation in Terahertz (THz) Communications
- TeraHertz Band Communication: An Old Problem Revisited and Research Directions for the Next Decade
- Computer Vision Aided Beam Tracking in A Real-World Millimeter Wave Deployment
- Near-Field Wideband Beamforming for Extremely Large Antenna Arrays
- Codebook Design and Beam Training for Extremely Large-Scale RIS: Far-Field or Near-Field?
- Channel Estimation for Extremely Large-Scale Massive MIMO: Far-Field, Near-Field, or Hybrid-Field?
- Triple-Structured Compressive Sensing-based Channel Estimation for RIS-aided MU-MIMO Systems
- Channel Estimation for Extremely Large-Scale MIMO: Far-Field or Near-Field?
- Channel Estimation for IRS-Assisted Millimeter-Wave MIMO Systems: Sparsity-Inspired Approaches
- Learning and Adaptation for Millimeter-Wave Beam Tracking and Training:\n a Dual Timescale Variational Framework
- Beam Focusing for Near-Field Multi-User MIMO Communications
- Reinforcement Learning of Beam Codebooks in Millimeter Wave and Terahertz MIMO Systems
- Millimeter-wave and Terahertz Spectrum for 6G Wireless
- Deep Learning-based Beam Tracking for Millimeter-wave Communications under Mobility
- Channel Estimation and Hybrid Combining for Wideband Terahertz Massive MIMO Systems
- Joint Inter-path and Intra-path Multiplexing for Terahertz Widely-spaced Multi-subarray Hybrid Beamforming Systems
- Wideband Channel Estimation with A Generative Adversarial Network
- Wideband Beam Tracking in THz Massive MIMO Systems
- Hierarchical Codebook based Multiuser Beam Training for Millimeter Wave Massive MIMO
- Channel Estimation for RIS-Aided mmWave MIMO Systems via Atomic Norm Minimization
- Model-Driven Deep Learning for Massive MU-MIMO with Finite-Alphabet Precoding
- Deep Denoising Neural Network Assisted Compressive Channel Estimation for mmWave Intelligent Reflecting Surfaces
- A Low-Overhead Hierarchical Beam-tracking Algorithm for THz Wireless Systems
- Toward 6G Networks: Use Cases and Technologies
- Sparse Channel Estimation and Hybrid Precoding Using Deep Learning for Millimeter Wave Massive MIMO
- High-Resolution Channel Estimation for Frequency-Selective mmWave Massive MIMO System
- Channel Fingerprint Based Beam Tracking for Millimeter Wave Communications
- Machine-Learning Beam Tracking and Weight Optimization for mmWave\n Multi-UAV Links
- 6G Wireless Communication Systems: Applications, Requirements, Technologies, Challenges, and Research Directions
- Weighted Spectral Efficiency Optimization for Hybrid Beamforming in Multiuser Massive MIMO-OFDM Systems
- Adaptive Beamwidth Control for mmWave Beam Tracking
- Enabling Large Intelligent Surfaces with Compressive Sensing and Deep Learning
- Intelligent Reflecting Surface Enhanced Wireless Network via Joint Active and Passive Beamforming
- Deep Learning-based Channel Estimation for Beamspace mmWave Massive MIMO Systems
- 2D Unitary ESPRIT Based Super-Resolution Channel Estimation for Millimeter-Wave Massive MIMO with Hybrid Precoding
- Tracking mm-Wave Channel Dynamics: Fast Beam Training Strategies under Mobility
- Common Codebook Millimeter Wave Beam Design: Designing Beams for Both Sounding and Communication with Uniform Planar Arrays
- Hybrid MIMO Architectures for Millimeter Wave Communications: Phase Shifters or Switches?
- Hybrid Block Diagonalization for Massive Multiuser MIMO Systems
- Channel Estimation and Hybrid Precoding for Millimeter Wave Cellular Systems
- Information-Theoretically Optimal Compressed Sensing via Spatial Coupling and Approximate Message Passing
- An Iteratively Weighted MMSE Approach to Distributed Sum-Utility Maximization for a MIMO Interfering Broadcast Channel
Cited by
Related