6G 移动蜂窝网络的合作传感:可行性、性能和现场试验

Guangyi Liu;Rongyan Xi;Zixiang Han;Lincong Han;Xiaozhou Zhang;Liang Ma;Yajuan Wang;Mengting Lou;Jing Jin;Qixing Wang;Jiangzhou Wang
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摘要

在即将到来的第六代(6G)无线通信中,通信与传感的结合被视为一项新功能。联合传感和通信(JSAC)系统的传统方法是利用一个基站(BS)作为传感发射器和传感接收器,即所谓的单静态传感。然而,由此产生的自干扰问题需要额外的硬件升级才能实现全双工。为了克服这一问题,本文重点研究发射机和接收机不共址的合作传感,包括双静态传感和多静态传感。具体而言,本文建立了基于移动网络的合作传感系统模型。为了证明合作传感的可行性,提供了双稳态雷达截面(RCS)。在传感方法方面,提出了一种精炼正交匹配追寻(R-OMP)方法来估计信道参数,还提供了数据融合方法来推导物体的位置和速度。考虑到合作 JSAC 网络中存在不可忽略的干扰,本文还讨论了干扰管理问题。仿真结果表明,与单静态传感相比,所提出的合作传感系统提高了 20% 以上的位置和速度估计精度。初步实验结果也验证了所提系统的可行性。
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Cooperative Sensing for 6G Mobile Cellular Networks: Feasibility, Performance, and Field Trial
The combination of communication and sensing is envisioned as a novel feature in the forthcoming sixth-generation (6G) wireless communication. The conventional approach to the joint sensing and communication (JSAC) system is utilizing one base station (BS) as both a sensing transmitter and a sensing receiver, which is known as monostatic sensing. However, the resulting self-interference issue requires additional hardware promotion to achieve full-duplexing. To overcome this issue, in this paper, we focus on cooperative sensing where the transmitter and receivers are non-co-located, which includes the bistatic and multistatic sensing. Specifically, the system model of cooperative sensing based on mobile networks is established. To demonstrate the feasibility of cooperative sensing, the bistatic radar cross section (RCS) is provided. As for the sensing method, a refined orthogonal matching pursuit (R-OMP) method is proposed to estimate the channel parameters and data fusion is also provided to derive the objects’ positions and velocities. Considering the non-negligible interference in the cooperative JSAC networks, we also discuss interference management in this paper. Simulation results show that the proposed cooperative sensing system improves the position and velocity estimation accuracy by over 20% when compared with monostatic sensing. The preliminary experiment results also verify the feasibility of the proposed system.
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Table of Contents IEEE Open Access Publishing Guest Editorial Positioning and Sensing Over Wireless Networks—Part II TechRxiv: Share Your Preprint Research With the World! IEEE Journal on Selected Areas in Communications Publication Information
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