王超宇, 梅湄, 李洪涛, 朱晓华. 基于压缩感知的稳健单通道波达方向估计方法[J]. 电波科学学报, 2014, 29(4): 678-684. doi: 10.13443/j.cjors.2013071601
      引用本文: 王超宇, 梅湄, 李洪涛, 朱晓华. 基于压缩感知的稳健单通道波达方向估计方法[J]. 电波科学学报, 2014, 29(4): 678-684. doi: 10.13443/j.cjors.2013071601
      WANG Chaoyu, MEI Mei, LI Hongtao, ZHU Xiaohua. A robust single-port DOA estimation algorithm based on compressive sensing[J]. CHINESE JOURNAL OF RADIO SCIENCE, 2014, 29(4): 678-684. doi: 10.13443/j.cjors.2013071601
      Citation: WANG Chaoyu, MEI Mei, LI Hongtao, ZHU Xiaohua. A robust single-port DOA estimation algorithm based on compressive sensing[J]. CHINESE JOURNAL OF RADIO SCIENCE, 2014, 29(4): 678-684. doi: 10.13443/j.cjors.2013071601

      基于压缩感知的稳健单通道波达方向估计方法

      A robust single-port DOA estimation algorithm based on compressive sensing

      • 摘要: 针对接收阵列射频通道间增益不一致以及系统感知模型与目标角度信息失配等情况下,基于压缩感知(Compressive Sensing,CS)的多目标波达方向(Direction of Arrival,DOA)估计方法性能下降的问题,提出了一种新的单通道CS-DOA估计方法.引入一种单通道阵列体制,并建立系统模型失配时的DOA稀疏感知模型;将丹茨格(Dantzig Selector,DS)算法和遗传算法相结合,分别对目标角度信息矢量和系统模型失配误差进行交替迭代优化.该方法有效克服了常见CS-DOA方法无法抑制系统模型失配误差的问题,避免了射频通道间增益不一致对DOA估计性能的影响.仿真结果表明:该方法性能优于传统DOA估计算法,能够对任意相关性信号进行有效DOA估计,具有更高的角度分辨力和估计精度.

         

        Abstract: To enhance the performance of multi-targets direction of arrival (DOA) estimation using compressive sensing(CS), when there exists different gain among radio frequency (RF) channels and mismatch error between system sensing model and target angle information, a novel CS-DOA algorithm based on single-port array is proposed. First, a DOA sparse sensing model based on single-port array is derived by exploiting the mismatch between system sensing model and target angle information. Then, the Dantzig Selector (DS) algorithm and genetic algorithm are employed to optimize the target angle information and system model mismatch error iteratively. Comparing to traditional CS-DOA algorithms, this method can suppress the system model mismatch error and inconsistency gain among different RF channels effectively. Numerical examples show that the presented algorithm performs better than traditional DOA algorithms for signals with any coherence and offers higher angle resolution and estimation accuracy.

         

      /

      返回文章
      返回