paper-with-me

Papers

Integrated Sensing and Communications in Clutter Environment

2023-11-03 · Hongliang Luo, Yucong Wang, Dongqi Luo, Jianwei Zhao, Huihui Wu, Shaodan Ma, Feifei Gao

In this paper, we propose a practical integrated sensing and communications (ISAC) framework to sense dynamic targets from clutter environment while ensuring users communications quality. To implement communications function and sensing function simultaneously, we design multiple communications beams that can communicate with the users as well as one sensing beam that can rotate and scan the entire space. To minimize the interference of sensing beam on existing communications systems, we divide the service area into sensing beam for sensing (S4S) sector and communications beam for sensing (C4S) sector, and provide beamforming design and power allocation optimization strategies for each type sector. Unlike most existing ISAC studies that ignore the interference of static environmental clutter on target sensing, we construct a mixed sensing channel model that includes both static environment and dynamic targets. When base station receives the echo signals, the mean phasor cancellation (MPC) method is employed to filter out the interference from static environmental clutter and to extract the effective dynamic target echoes. Then a complete and practical dynamic target sensing scheme is designed to detect the presence of dynamic targets and to estimate their angles, distances, and velocities. In particular, dynamic target detection and angle estimation are realized through angle-Doppler spectrum estimation (ADSE) and joint detection over multiple subcarriers (MSJD), while distance and velocity estimation are realized through the extended subspace algorithm. Simulation results demonstrate the effectiveness of the proposed scheme and its superiority over the existing methods that ignore environmental clutter.

📄 PDF Abstract BibTeX arXiv:2311.01674

Code (0)

등록된 구현이 없습니다.

Tasks

ISAC

Methods 이 논문이 사용한 방법론

Golden Queue Managers 설명 없음
BASE 설명 없음

Similar Papers 제목 키워드 기반

Enhancing Sensing-Assisted Communications in Cluttered Indoor Environments through Background Subtraction

2024-01-11 · Andrea Ramos, Musa Furkan Keskin, Henk Wymeersch, Saul Inca 외

Integrated sensing and communications (ISAC) is poised to be a native technology for the forthcoming Sixth Generation (6G) era, with an emphasis on its potential to enhance communications performance through the integrat…

ISAC

CRAP: Clutter Removal with Acquisitions Under Phase Noise

2023-06-01 · Marcus Henninger, Silvio Mandelli, Artjom Grudnitsky, Thorsten Wild 외

The emergence of Integrated Sensing and Communication (ISAC) in future 6G networks comes with a variety of challenges to be solved. One of those is clutter removal, which should be applied to remove the influence of unwa…

Integrated sensing and communicationISAC

Mutual Information-Based Integrated Sensing and Communications: A WMMSE Framework

2023-10-19 · Yizhou Peng, Songjie Yang, Wanting Lyu, Ya Li 외

In this letter, a weighted minimum mean square error (WMMSE) empowered integrated sensing and communication (ISAC) system is investigated. One transmitting base station and one receiving wireless access point are conside…

Integrated sensing and communicationISAC

Novel Approach to Dual-Channel Estimation in Integrated Sensing and Communications for 6G

2025-07-16 · Alejandro Castilla, Saúl Fenollosa, Monika Drozdowska, Alejandro Lopez-Escudero 외

Integrated Sensing and Communication (ISAC) design is crucial for 6G and harmonizes environmental data sensing with communication, emphasizing the need to understand and model these elements. This paper delves into dual-…

Integrated sensing and communicationISAC

Moving Target Sensing for ISAC Systems in Clutter Environment

2023-11-03 · Dongqi Luo, Huihui Wu, Hongliang Luo, Bo Lin 외

In this paper, we consider the moving target sensing problem for integrated sensing and communication (ISAC) systems in clutter environment. Scatterers produce strong clutter, deteriorating the performance of ISAC system…

Integrated sensing and communicationISAC