Environment Reconstruction With Multi-Targets Reflectors-Merged Sensing Method Based on THz Single-Sided Channel Characteristics

IF 5.5 3区 计算机科学 Q1 COMPUTER SCIENCE, INFORMATION SYSTEMS IEEE Wireless Communications Letters Pub Date : 2025-02-25 DOI:10.1109/LWC.2025.3545593
Zhaowei Chang;Pan Tang;Jianhua Zhang;Hao Jiang;Guangyi Liu
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Abstract

Terahertz (THz) integrated sensing and communication (ISAC) holds the potential to achieve high data rates and high-resolution sensing. Reconstructing the propagation environment is a vital step for THz ISAC, as it enhances the predictability of the communication channel to reduce communication overhead. In this letter, we propose an environment reconstruction methodology (ERM) merging reflectors of multi-targets based on THz single-sided channel small-scale characteristics. In this method, the inclination and position of tiny reflection faces of one single multi-path (MPC) are initially detected by double-triangle equations based on Snell’s law and geometry properties. Then, those reflection faces of multi-target MPCs, which are filtrated as available and one-order reflection MPCs, are globally merged to accurately reconstruct the entire propagation environment. The ERM is capable of operating with only small-scale parameters of receiving MPC. Subsequently, we validate our ERM through two experiments: bi-static ray-tracing simulations in an L-shaped room and channel measurements in an urban macrocellular (UMa) scenario in THz bands. The validation results demonstrate a small deviation of 0.03 m between the sensing outcomes and the predefined reflectors in the ray-tracing simulation and a small sensing root-mean-square error of 1.28 m and 0.45 m in line-of-sight and non-line-of-sight cases respectively based on channel measurements. Overall, this letter is valuable for designing THz communication systems and facilitating the application of THz ISAC communication techniques.
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基于太赫兹单面信道特性的多目标反射融合传感环境重构方法
太赫兹(THz)集成传感和通信(ISAC)具有实现高数据速率和高分辨率传感的潜力。重建传播环境是太赫兹ISAC的关键步骤,因为它增强了通信信道的可预测性,从而减少了通信开销。在这封信中,我们提出了一种基于太赫兹单面通道小尺度特征的融合多目标反射器的环境重建方法(ERM)。该方法利用基于Snell定律和几何特性的双三角方程,对单多径反射面进行倾角和位置的初始检测。然后,将过滤后的多目标mpc反射面作为可用的一阶反射mpc进行全局合并,精确重构整个传播环境;ERM能够仅使用接收MPC的小规模参数进行操作。随后,我们通过两个实验验证了我们的ERM:在l型房间中的双静态光线追踪模拟和在太赫兹波段的城市宏蜂窝(UMa)场景中的通道测量。验证结果表明,在光线追踪模拟中,传感结果与预定义反射器之间的偏差较小,为0.03 m;基于通道测量,在视距和非视距情况下,传感均方根误差较小,分别为1.28 m和0.45 m。综上所述,本文对太赫兹通信系统的设计和太赫兹ISAC通信技术的应用具有一定的参考价值。
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来源期刊
IEEE Wireless Communications Letters
IEEE Wireless Communications Letters Engineering-Electrical and Electronic Engineering
CiteScore
12.30
自引率
6.30%
发文量
481
期刊介绍: IEEE Wireless Communications Letters publishes short papers in a rapid publication cycle on advances in the state-of-the-art of wireless communications. Both theoretical contributions (including new techniques, concepts, and analyses) and practical contributions (including system experiments and prototypes, and new applications) are encouraged. This journal focuses on the physical layer and the link layer of wireless communication systems.
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