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近场ISAC多用户安全通信波束设计

邓志祥 张志威

邓志祥, 张志威. 近场ISAC多用户安全通信波束设计[J]. 电子与信息学报. doi: 10.11999/JEIT250462
引用本文: 邓志祥, 张志威. 近场ISAC多用户安全通信波束设计[J]. 电子与信息学报. doi: 10.11999/JEIT250462
DENG Zhixiang, ZHANG Zhiwei. Secure Beamforming Design for Multi-User Near-Field ISAC Systems[J]. Journal of Electronics & Information Technology. doi: 10.11999/JEIT250462
Citation: DENG Zhixiang, ZHANG Zhiwei. Secure Beamforming Design for Multi-User Near-Field ISAC Systems[J]. Journal of Electronics & Information Technology. doi: 10.11999/JEIT250462

近场ISAC多用户安全通信波束设计

doi: 10.11999/JEIT250462 cstr: 32379.14.JEIT250462
基金项目: 河南省重点研发专项项目(251111220700)
详细信息
    作者简介:

    邓志祥:男,副教授,研究方向为无线物理层安全

    张志威:男,硕士生,研究方向为无线物理层安全

    通讯作者:

    邓志祥 dengzhixiang@hhu.edu.cn

  • 中图分类号: TN918.91

Secure Beamforming Design for Multi-User Near-Field ISAC Systems

Funds: Key Research and Development Special Project of Henan Province (251111220700)
  • 摘要: 该文研究了近场通感一体化系统(ISAC)中多用户安全波束设计问题,其中多个单天线通信用户和一个雷达感知目标都位于发射机的近场区域内,雷达目标作为潜在窃听者,可能从联合波束中获取通信信息。为保证系统通信安全性和感知精度,该文以多用户可达安全和速率最大化为目标、以基站发射功率和感知性能为约束条件,构建了通信信号与雷达感知信号波束形成向量的联合优化模型。其中,雷达感知信号间兼具双重功能:一方面作为人工噪声,干扰窃听者对合法通信用户信息的解码;另一方面用于实现对目标的感知,其感知性能通过克拉美罗界(CRB)进行量化。为解决该多变量的非凸优化问题,该文提出了基于半正定松弛(SDR)和加权最小均方误差(WMMSE)的优化算法求解该优化问题。仿真结果表明近场模型所提供的距离自由度,以及引入人工噪声信号,能够为多用户ISAC通信安全带来性能增益。
  • 图  1  系统模型

    图  2  算法迭代收敛

    图  3  通信与雷达信号的归一化信号功率

    图  4  安全和速率与CRB阈值关系

    图  5  安全和速率与不同天线数关系

    图  6  安全和速率与发射功率关系

    图  7  安全和速率与用户数量关系

    1  基于SDR和WMMSE的联合优化算法

     输入:$ {\boldsymbol{H}}{,}{{\beta }_{e}}{,}a({r_e}{,}{\theta _e}){,\sigma }_{k}^{2}{,\sigma }_{e}^{2}{,\gamma ,}{\text{Pt}}{,\varepsilon ,\eta ,}{{\mathrm{ite}}}{{{\mathrm{r}}}_{{\max}}} $
     输出:$\forall {{\boldsymbol{f}}_{k}}{,}{{\boldsymbol{R}}_{\boldsymbol{s}}}$
     (1) 初始化
     (2) 初始化${{\boldsymbol{f}}_{k}}$使得${\text{tr}}\left(\displaystyle\sum\nolimits_{i = 1}^K {{{\boldsymbol{F}}_i}} \right) = {P_t}$,${\text{iter}} = 1$
     (3) 重复
     (4) $w_k^{} = \dfrac{{{\boldsymbol{h}}_k^{\text{H}}{{\boldsymbol{f}}_{k}}}}{{\displaystyle\sum\limits_{j = 1}^K | {\boldsymbol{h}}_k^{\text{H}}{{\boldsymbol{f}}_j}{|^2} + {\boldsymbol{h}}_k^{\text{H}}{{\boldsymbol{R}}_{\boldsymbol{s}}}{{\boldsymbol{h}}_k} + \sigma _k^2}}$
     (5) $b_k^{} = {e_k}^{ - 1}$
     (6) 解凸优化(P5)计算${{\boldsymbol{T}}_{k}}$和${{\boldsymbol{R}}_{\boldsymbol{s}}}$
     (7) 通过高斯随机化或者特征值分解求${{\boldsymbol{f}}_{k}}$
     (8) ${\text{iter}} = {\text{iter}} + 1$
     (9) 直到$ \left| {\displaystyle\sum\nolimits_{i = 1}^K {\left( {{\text{SR}}_i^{(t)} - {\text{SR}}_i^{(t - 1)}} \right)} } \right| \le \eta $或${\text{iter}} = {\text{ite}}{{\text{r}}_{{\text{max}}}}$
    下载: 导出CSV
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出版历程
  • 收稿日期:  2025-05-27
  • 修回日期:  2025-09-18
  • 网络出版日期:  2025-09-24

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