Linear Model of RIS-Aided High-Mobility Communication System

IF 7.1 2区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Vehicular Technology Pub Date : 2025-02-25 DOI:10.1109/TVT.2025.3545644
Shuaijun Li;Jie Tang;Beixiong Zheng;Xiaokai Song;Xiaoqi Qin;Guixin Pan;Kai-Kit Wong
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Abstract

Reconfigurable intelligent surface (RIS)-aided vehicle-to-everything (V2X) communication has emerged as a crucial solution for providing reliable data services to vehicles on the road. However, in delay-sensitive or high-mobility communications, the rapid movement of vehicles can lead to random scattering in the environment and time-selective fading in the channel. In view of this, we investigate in this paper an innovative linear model with low-complexity transmitter signal design and receiver detection methods, which boost stability in fast-fading environments and reduce channel training overhead. Specifically, considering the differences in hardware design and signal processing at the receiving end between uplink and downlink communication systems, distinct solutions are proposed. Accordingly, we first integrate the Rician channel introduced by the RIS with the corresponding signal processing algorithms to model the RIS-aided downlink communication system as a Doppler-robust linear model. Inspired by this property, we design a precoding scheme based on the linear model to reduce the complexity of precoding. Then, by leveraging the linear model and the large-scale antenna array at the base station (BS) side, we improve the linear model for the uplink communication system and derive its asymptotic performance in closed-form. Simulation results demonstrate the performance advantages of the proposed RIS-aided high-mobility communication system compared to other benchmark schemes.
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ris辅助高移动性通信系统的线性模型
可重构智能地面(RIS)辅助车联网(V2X)通信已经成为为道路上的车辆提供可靠数据服务的关键解决方案。然而,在延迟敏感或高机动性通信中,车辆的快速运动可能导致环境中的随机散射和信道中的时间选择性衰落。鉴于此,本文研究了一种创新的线性模型,该模型具有低复杂度的发射信号设计和接收机检测方法,从而提高了快速衰落环境下的稳定性并减少了信道训练开销。具体而言,考虑到上下行通信系统在硬件设计和接收端信号处理方面的差异,提出了不同的解决方案。因此,我们首先将RIS引入的专家信道与相应的信号处理算法相结合,将RIS辅助下行通信系统建模为多普勒鲁棒线性模型。受这一特性的启发,我们设计了一种基于线性模型的预编码方案来降低预编码的复杂度。然后,利用线性模型和基站侧的大型天线阵列,对上行通信系统的线性模型进行了改进,并以封闭形式导出了上行通信系统的渐近性能。仿真结果表明,与其他基准方案相比,所提出的ris辅助高移动性通信系统具有性能优势。
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来源期刊
CiteScore
6.00
自引率
8.80%
发文量
1245
审稿时长
6.3 months
期刊介绍: The scope of the Transactions is threefold (which was approved by the IEEE Periodicals Committee in 1967) and is published on the journal website as follows: Communications: The use of mobile radio on land, sea, and air, including cellular radio, two-way radio, and one-way radio, with applications to dispatch and control vehicles, mobile radiotelephone, radio paging, and status monitoring and reporting. Related areas include spectrum usage, component radio equipment such as cavities and antennas, compute control for radio systems, digital modulation and transmission techniques, mobile radio circuit design, radio propagation for vehicular communications, effects of ignition noise and radio frequency interference, and consideration of the vehicle as part of the radio operating environment. Transportation Systems: The use of electronic technology for the control of ground transportation systems including, but not limited to, traffic aid systems; traffic control systems; automatic vehicle identification, location, and monitoring systems; automated transport systems, with single and multiple vehicle control; and moving walkways or people-movers. Vehicular Electronics: The use of electronic or electrical components and systems for control, propulsion, or auxiliary functions, including but not limited to, electronic controls for engineer, drive train, convenience, safety, and other vehicle systems; sensors, actuators, and microprocessors for onboard use; electronic fuel control systems; vehicle electrical components and systems collision avoidance systems; electromagnetic compatibility in the vehicle environment; and electric vehicles and controls.
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