Near-Field Challenges in Ultra-Wideband ISAC: Beamforming Strategies and System Insights

Fuente: arXiv
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Auteurs principaux: Kim, Yonghwi, Park, Sang-Hyun, Yang, Siyun, Wong, Kai-Kit, Dai, Linglong, Chae, Chan-Byoung
Format: Preprint
Publié: 2025
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author Kim, Yonghwi
Park, Sang-Hyun
Yang, Siyun
Wong, Kai-Kit
Dai, Linglong
Chae, Chan-Byoung
author_facet Kim, Yonghwi
Park, Sang-Hyun
Yang, Siyun
Wong, Kai-Kit
Dai, Linglong
Chae, Chan-Byoung
contents The shift toward sixth-generation (6G) wireless networks places integrated sensing and communications (ISAC) at the core of future applications such as autonomous driving, extended reality, and smart manufacturing. However, the combination of large antenna arrays and ultra-wide bandwidths brings near-field propagation effects and beam squint to the forefront, fundamentally challenging traditional far-field designs. True time delay units (TTDs) offer a potential solution, but their cost and hardware complexity limit scalability. In this article, we present practical beamforming strategies for near-field ultra-wideband ISAC systems. We explore codebook designs across analog and digital domains that mitigate beam squint, ensure reliable user coverage, and enhance sensing accuracy. We further validate these approaches through large-scale system-level simulations, including 3D map-based evaluations that reflect real-world urban environments. Our results demonstrate how carefully designed beamforming can balance communication throughput with sensing performance, achieving reliable coverage and efficient resource use even under severe near-field conditions. We conclude by highlighting open challenges in hardware, algorithms, and system integration, pointing toward research directions that will shape the deployment of 6G-ready ISAC networks.
format Preprint
id arxiv_https___arxiv_org_abs_2508_18810
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Near-Field Challenges in Ultra-Wideband ISAC: Beamforming Strategies and System Insights
Kim, Yonghwi
Park, Sang-Hyun
Yang, Siyun
Wong, Kai-Kit
Dai, Linglong
Chae, Chan-Byoung
Signal Processing
The shift toward sixth-generation (6G) wireless networks places integrated sensing and communications (ISAC) at the core of future applications such as autonomous driving, extended reality, and smart manufacturing. However, the combination of large antenna arrays and ultra-wide bandwidths brings near-field propagation effects and beam squint to the forefront, fundamentally challenging traditional far-field designs. True time delay units (TTDs) offer a potential solution, but their cost and hardware complexity limit scalability. In this article, we present practical beamforming strategies for near-field ultra-wideband ISAC systems. We explore codebook designs across analog and digital domains that mitigate beam squint, ensure reliable user coverage, and enhance sensing accuracy. We further validate these approaches through large-scale system-level simulations, including 3D map-based evaluations that reflect real-world urban environments. Our results demonstrate how carefully designed beamforming can balance communication throughput with sensing performance, achieving reliable coverage and efficient resource use even under severe near-field conditions. We conclude by highlighting open challenges in hardware, algorithms, and system integration, pointing toward research directions that will shape the deployment of 6G-ready ISAC networks.
title Near-Field Challenges in Ultra-Wideband ISAC: Beamforming Strategies and System Insights
topic Signal Processing
url https://arxiv.org/abs/2508.18810