基于阵列自适应旋转的同频多电磁辐射源测向增强方法
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1国家电网有限公司信息通信中心,北京 100761;2南京南瑞信息通信科技有限公司,南京 211100;3南京航空航天大学电子信息工程学院,南京 211106

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国家自然科学基金(62531019,62371227,62427801);江苏省重点研发计划(BE2023027);江苏省前沿引领技术基础研究重大项目(BK20232030);稳定支持国防特色学科基础研究项目(ILF240061A24)。


Multi-source Direction-of-Arrival Estimation via Adaptive Antenna Array Rotation
Author:
Affiliation:

1State Grid Information & Telecommunication Center, Beijing 100761, China;2Nanjing NARI Information and Communication Technology Co., Ltd., Nanjing 211100, China;3College of Electronic and Information Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 211106, China

Fund Project:

National Natural Science Foundation of China (Nos.62531019,62371227,62427801); Key R & D Plan of Jiangsu Province (No.BE2023027); Frontier Leads Major Basic Technology Research Projects of Jiangsu Province (No.BK20232030); Funding of Steady-Supported Guofang Characteristic Subject Fundamental Research Project (No.ILF240061A24).

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    摘要:

    提出了一种关于均匀线性阵列(Uniform linear array, ULA)的自适应旋转的同频多电磁辐射源测向增强方法。针对传统固定阵列在多信源场景下估计精度受限的问题,通过引入动态旋转机制,建立旋转角与克拉美-罗界(Cramer-Rao bound, CRB)的解析关系,推导出最优旋转角的闭式解。采用CRB的迹作为损失函数,其物理含义为均方误差的理论可达下界。通过降低CRB,可以提升系统的可观测性,从而有效提升到达角(Direction of arrival, DoA)估计算法的估计精度。由于多信源情形下CRB是一个相关矩阵,因此推导了在快拍数足够多的情形下CRB的简化对角形式。使用该简化的对角形式的CRB来替代原CRB实施优化,进而降低优化难度。为实现高精度的波达方向估计,首先通过快速算法获取信号入射角的先验信息。该先验由阵列在接收并采样多个辐射源信号后,根据协方差矩阵的计算得到。然后,确定能够最小化损失函数的旋转角,并将其作为阵列的最优姿态。阵列调整到该角度后,在相同位置再次利用算法执行方向估计,从而获得最终的波达角结果。该方法能够在多源信号条件下保持较高的估计精度,有效提升整体方向估计性能。仿真结果验证了所提方法能够有效降低CRB,并提升定位精度,同时提升谱图搜索类算法的分辨率。

    Abstract:

    This paper proposes an adaptive rotation-based enhancement method for direction-of-arrival (DoA) estimation of co-frequency multiple emitters using a uniform linear array (ULA). Addressing the limited estimation accuracy of traditional fixed arrays in multi-source scenarios, a dynamic rotation mechanism is introduced to establish an analytical relationship between the rotation angle and the Cramer-Rao bound (CRB), leading to the derivation of a closed-form solution for the optimal rotation angle. The trace of the CRB is employed as the loss function, representing the theoretically achievable lower bound of the mean squared error. By minimizing the CRB, the system observability is enhanced, thereby improving the estimation accuracy of DoA algorithms. Given that the CRB in multi-source scenarios is a correlated matrix, a simplified diagonal form of the CRB is derived under the condition of a sufficiently large number of snapshots. This simplified diagonal CRB is utilized for optimization, significantly reducing computational complexity. To achieve high-precision DoA estimation, prior information about the signal incident angles is first obtained using a fast algorithm. This prior is derived from covariance matrix computations after the array receives and samples signals from multiple radiation sources. Subsequently, the rotation angle that minimizes the loss function is determined and adopted as the optimal array orientation. After adjusting the array to this angle, the DoA estimation algorithm is reapplied at the same position to obtain the final DoA results. The proposed method maintains high estimation accuracy under multi-source conditions and effectively enhances overall direction estimation performance. Simulation results demonstrate that the method significantly reduces the CRB, improves localization accuracy, and enhances the resolution of spectral search-based algorithms.

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高小芳,林通,冯宝,陈泽,李潘,李建峰.基于阵列自适应旋转的同频多电磁辐射源测向增强方法[J].数据采集与处理,2026,(3):701-709

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  • 收稿日期:2025-11-04
  • 最后修改日期:2026-03-11
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  • 在线发布日期: 2026-06-10