北京邮电大学学报

  • EI核心期刊

北京邮电大学学报

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RIS辅助的全双工通感一体化波形设计方法

刘畅,王艳艳,时巧,杨洋   

  1. 西南交通大学
  • 收稿日期:2023-12-28 修回日期:2024-01-29 发布日期:2024-07-18
  • 通讯作者: 王艳艳
  • 基金资助:
    国家自然科学基金项目;四川省杰出青年科学基金项目;中央高校基本科研业务费专项资金;中央高校基本科研业务费专项资金;中央高校基本科研业务费专项资金

Waveform Design Method for RIS-Assisted Full-Duplex Integrated Sensing and Communication

  • Received:2023-12-28 Revised:2024-01-29 Published:2024-07-18

摘要: 针对以雷达为中心的通信感知一体化(ISAC)波形通信速率过低问题,提出一种可重构智能超表面(RIS)辅助的全双工(FD)ISAC波形设计方法。首先,通过引入RIS,并基于FD技术在雷达脉冲重复周期内分别发射ISAC信号与通信信号,构建了RIS辅助的FD-ISAC系统模型。其次,结合雷达低积分旁瓣电平(ISL)与通信低误码率需求,建立了以最小化ISL为目标函数,以通信符号相位相似性、能量、峰均功率比为约束准则的ISAC波形设计优化模型,并基于优化最小化算法对其进行求解。随后,分析了RIS辅助的FD-ISAC系统的雷达和通信性能,给出了检测概率和频谱效率的闭合表达式。仿真结果表明,所设计的ISAC波形能够有效实现雷达探测和信息传输功能。另外相较于传统的FD-ISAC系统,提出的RIS辅助的FD-ISAC系统拥有更高的频谱效率和更低的误码率。

关键词: 通信感知一体化, 波形设计, 全双工系统, 可重构智能超表面, 积分旁瓣电平

Abstract: In order to solve the low communication spectrum efficiency problem of radar-centered integrated sensing and communication (ISAC) waveform, a waveform design method for reconfigurable intelligent surface (RIS)-assisted full-duplex (FD) ISAC is proposed. Firstly, by introducing RIS and FD technology, ISAC signal and communication signal are transmitted respectively in radar pulse repetition interval, and RIS-assisted FD-ISAC system model is constructed. Secondly, combined with radar requirement of low integrated sidelobe level (ISL) and communication requirement of low symbol error rate, an ISAC waveform design optimization model is established, where minimizing ISL as objective function and communication symbol phase similarity, energy and peak-to-average power ratio as constraint criteria, and it is solved by the majorization minimization algorithm. Then, radar and communication performance of RIS-assisted FD-ISAC system are analyzed, and the closed expressions of detection probability and spectrum efficiency are given. Simulation results show that designed ISAC waveform can effectively realize radar detection and information transmission. In addition, compared with traditional FD-ISAC system, the proposed RIS-assisted FD-ISAC system has higher spectrum efficiency and lower symbol error rate.

Key words: integrated sensing and communication, waveform design, full-duplex system, reconfigurable intelligent surface, integrated sidelobe level

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