Leveraging A Variety of Anchors in Cellular Network for Ubiquitous Sensing

Type: Preprint

Publication Date: 2024-03-26

Citations: 0

DOI: https://doi.org/10.48550/arxiv.2403.17652

Abstract

Integrated sensing and communication (ISAC) has recently attracted tremendous attention from both academia and industry, being envisioned as a key part of the standards for the sixth-generation (6G) cellular network. A key challenge of 6G-oriented ISAC lies in how to perform ubiquitous sensing based on the communication signals and devices. Previous works have made great progresses on studying the signal waveform design that leads to optimal communication-sensing performance tradeoff. In this article, we aim to focus on issues arising from the exploitation of the communication devices for sensing in 6G network. Particularly, we will discuss about how to leverage various nodes available in the cellular network as anchors to perform ubiquitous sensing. On one hand, the base stations (BSs) will be the most important anchors in the future 6G ISAC network, since they can generate/process radio signals with high range/angle resolutions, and their positions are precisely known. Correspondingly, we will first study the BS-based sensing technique. On the other hand, the BSs alone may not enable ubiquitous sensing, since they cannot cover all the places with strong line-of-sight (LOS) links. This motivates us to investigate the possibility of using other nodes that are with higher density in the network to act as the anchors. Along this line, we are interested in two types of new anchors - user equipments (UEs) and reconfigurable intelligent surfaces (RISs). This paper will shed light on the opportunities and challenges brought by UE-assisted sensing and RIS-assisted sensing. Our goal is to devise a novel 6G-oriented sensing architecture where BSs, UEs, and RISs can work together to provide ubiquitous sensing services.

Locations

  • arXiv (Cornell University) - View - PDF

Similar Works

Action Title Year Authors
+ PDF Chat Leveraging a Variety of Anchors in Cellular Network for Ubiquitous Sensing 2024 Liang Liu
Shuowen Zhang
Shuguang Cui
+ PDF Chat A Heterogeneous 6G Networked Sensing Architecture With Active and Passive Anchors 2024 Qipeng Wang
Liang Liu
Shuowen Zhang
Boya Di
Francis C. M. Lau
+ A Heterogeneous 6G Networked Sensing Architecture with Active and Passive Anchors 2023 Qipeng Wang
Liang Liu
Shuowen Zhang
Boya Di
Francis C. M. Lau
+ Networked Sensing in 6G Cellular Networks: Opportunities and Challenges 2022 Liang Liu
Shuowen Zhang
Rui Du
Tong Xiao Han
Shuguang Cui
+ PDF Chat Empowering Programmable Wireless Environments with Optical Anchor-based Positioning 2024 Dimitrios Tyrovolas
Dimitrios Bozanis
Sotiris A. Tegos
Vasilis K. Papanikolaou
Panagiotis D. Diamantoulakis
Christos Liaskos
Robert Schober
George K. Karagiannidis
+ Role of Reconfigurable Intelligent Surfaces in 6G Radio Localization: Recent Developments, Opportunities, Challenges, and Applications 2023 Anum Umer
Ivo Müürsepp
Muhammad Mahtab Alam
Henk Wymeersch
+ PDF Chat Demo: Reconfigurable Distributed Antennas and Reflecting Surface (RDARS)-aided Integrated Sensing and Communication System 2023 Jintao Wang
Chengwang Ji
Jiajia Guo
Shaodan Ma
+ Demo: Reconfigurable Distributed Antennas and Reflecting Surface (RDARS)-aided Integrated Sensing and Communication System 2023 Jintao Wang
Chengwang Ji
Jiajia Guo
Shaodan Ma
+ PDF Chat A Simple Detection and Identification Scheme For Reconfigurable Intelligent Surfaces 2024 Aymen Khaleel
Recep Vural
Mehmet C. Ilter
Majid Gerami
Ertuğrul Başar
+ Reconfigurable Intelligent Sensing Surface aided Wireless Powered Communication Networks: A Sensing-Then-Reflecting Approach 2023 Cheng Luo
Jie Hu
Luping Xiang
Kun Yang
+ PDF Chat Reconfigurable Intelligent Sensing Surface Aided Wireless Powered Communication Networks: A Sensing-Then-Reflecting Approach 2023 Cheng Luo
Jie Hu
Luping Xiang
Kun Yang
+ PDF Chat COLoRIS: Localization-agnostic Smart Surfaces Enabling Opportunistic ISAC in 6G Networks 2024 Guillermo Encinas-Lago
Francesco Devoti
Marco Rossanese
Vincenzo Sciancalepore
Marco Di Renzo
Xavier Costa‐Pérez
+ Sensing the Environment with 5G Scattered Signals (5G-CommSense): A Feasibility Analysis 2023 Sandip Jana
Amit Kumar Mishra
Mohammed Zafar Ali Khan
+ PDF Chat Sensing the Environment with 5G Scattered Signals (5G-CommSense): A Feasibility Analysis 2023 Sandip Jana
Amit Kumar Mishra
Mohammed Zafar Ali Khan
+ 6G White Paper on Localization and Sensing 2020 André Bourdoux
André Noll Barreto
Barend van Liempd
Carlos H. M. de Lima
Davide Dardari
Didier Belot
Elena Simona Lohan
Gonzalo Seco‐Granados
Hadi Sarieddeen
Henk Wymeersch
+ 6G Localization and Sensing in the Near Field: Features, Opportunities, and Challenges 2023 Hui Chen
Musa Furkan Keskin
Adham Sakhnini
Nicolò Decarli
Sofie Pollin
Davide Dardari
Henk Wymeersch
+ Misspecified Cramér-Rao Bound of RIS-Aided Localization Under Geometry Mismatch 2023 Pinjun Zheng
Hui Chen
Tarig Ballal
Henk Wymeersch
Tareq Y. Al-Naffouri
+ Near-Field Integrated Sensing and Communications: Unlocking Potentials and Shaping the Future 2023 Kaiqian Qu
Shuaishuai Guo
Jia Ye
Nasir Saeed
+ PDF Chat Integrated Sensing and Communications Framework for 6G Networks 2024 Hongliang Luo
Tengyu Zhang
Chuanbin Zhao
Yucong Wang
Bo Lin
Yuhua Jiang
Dongqi Luo
Feifei Gao
+ PDF Chat Symbiotic Sensing and Communications Towards 6G: Vision, Applications, and Technology Trends 2021 Zhiqin Wang
Kaifeng Han
Jiamo Jiang
Zhiqing Wei
Guangxu Zhu
Zhiyong Feng
Jianmin Lu
Chunwei Meng

Works That Cite This (0)

Action Title Year Authors

Works Cited by This (0)

Action Title Year Authors