Target Localization in Cooperative ISAC Systems: A Scheme Based on 5G NR OFDM Signals

IF 8.3 2区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Communications Pub Date : 2024-10-28 DOI:10.1109/TCOMM.2024.3486981
Zhenkun Zhang;Hong Ren;Cunhua Pan;Sheng Hong;Dongming Wang;Jiangzhou Wang;Xiaohu You
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Abstract

The integration of sensing capabilities into communication systems, by sharing physical resources, has a significant potential for reducing spectrum, hardware, and energy costs while inspiring innovative applications. Cooperative networks, in particular, are expected to enhance sensing services by enlarging the coverage area and enriching sensing measurements, thus improving the service availability and accuracy. This paper proposes a cooperative integrated sensing and communication (ISAC) framework by leveraging information-bearing orthogonal frequency division multiplexing (OFDM) signals transmitted by access points (APs). Specifically, we propose a two-stage scheme for target localization, where communication signals are reused as sensing reference signals based on the system information shared at the central processing unit (CPU). In Stage I, we propose a two-dimensional fast Fourier transform (2D-FFT)-based algorithm to measure the ranges of scattered paths induced by targets, through the extraction of delay and Doppler information from the sensing channels between APs. Then, the target locations are estimated in Stage II based on these range measurements. Considering the potential occurrence of ill-conditioned measurements with large error during the extraction of time-frequency information, we propose an efficient algorithm to match the range measurements with the targets while eliminating ill-conditioned measurements, achieving high-accuracy target localization. In addition, based on the transmission configurations defined in the fifth generation (5G) standards, we elucidate the performance trade-offs in both communication and sensing, and extend the proposed sensing scheme for general scenarios. Finally, numerical results confirm the effectiveness of our sensing scheme and the cooperative gain of the ISAC framework.
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合作 ISAC 系统中的目标定位:基于 5G NR OFDM 信号的方案
通过共享物理资源,将传感能力集成到通信系统中,在激发创新应用的同时,具有降低频谱、硬件和能源成本的巨大潜力。合作网络尤其有望通过扩大覆盖范围和丰富传感测量来加强传感服务,从而提高服务的可用性和准确性。本文提出了一种利用接入点(ap)传输的承载信息的正交频分复用(OFDM)信号的协同集成传感与通信(ISAC)框架。具体来说,我们提出了一种两阶段的目标定位方案,其中通信信号被重用为基于中央处理器(CPU)共享的系统信息的感知参考信号。在第一阶段,我们提出了一种基于二维快速傅立叶变换(2D-FFT)的算法,通过从ap之间的传感信道中提取延迟和多普勒信息来测量目标诱导的散射路径的距离。然后,在第二阶段根据这些距离测量估计目标位置。考虑到时频信息提取过程中可能出现误差较大的病态测量值,提出了一种有效的距离测量值与目标匹配的算法,同时消除了病态测量值,实现了高精度的目标定位。此外,基于第五代(5G)标准中定义的传输配置,我们阐明了通信和感知的性能权衡,并将所提出的感知方案扩展到一般场景。最后,数值结果验证了该传感方案的有效性和ISAC框架的协同增益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
IEEE Transactions on Communications
IEEE Transactions on Communications 工程技术-电信学
CiteScore
16.10
自引率
8.40%
发文量
528
审稿时长
4.1 months
期刊介绍: The IEEE Transactions on Communications is dedicated to publishing high-quality manuscripts that showcase advancements in the state-of-the-art of telecommunications. Our scope encompasses all aspects of telecommunications, including telephone, telegraphy, facsimile, and television, facilitated by electromagnetic propagation methods such as radio, wire, aerial, underground, coaxial, and submarine cables, as well as waveguides, communication satellites, and lasers. We cover telecommunications in various settings, including marine, aeronautical, space, and fixed station services, addressing topics such as repeaters, radio relaying, signal storage, regeneration, error detection and correction, multiplexing, carrier techniques, communication switching systems, data communications, and communication theory. Join us in advancing the field of telecommunications through groundbreaking research and innovation.
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