School of Marine Science and Technology, Northwestern Polytechnical University, Xi'an 710072, China.
School of Engineering, Xi'an International University, Xi'an 710077, China.
Sensors (Basel). 2018 Jul 29;18(8):2458. doi: 10.3390/s18082458.
Aiming at addressing the problem caused by multipath effects in direction of arrival (DOA) estimation for underwater targets, a method based on the active detection on virtual time reversal (ADVTR) Capon algorithm is proposed. Unlike the conventional passive target estimation method ignoring the multipath effects but only considering the direct wave, the proposed method is closer to the actual situation in that the multipath signal propagation model is fully taken into account; in addition, active detection (AD) and virtual time reversal (VTR) processes are added, which use active detection to estimate channels, and virtual time reversal to realize focusing in a computer after the source-receive array (SRA) receives the reflected signal of the target. The combination of the two methods can greatly improve the energy of SRA and the precision of target direction estimation. With the popular acoustic field simulation tool Bellhop, the model proposed in this paper is verified. Compared with the conventional Capon method without time reversal, the simulation results show that the ADVTR Capon estimation method is far better, in terms of resolution and suppressing the sidelobes. It is suitable for the target DOA estimation under low signal-to-noise ratio (SNR) conditions. Further, we also show the ADVTR Capon estimation method works well in a real tank experiment.
针对水下目标到达角(DOA)估计中多径效应问题,提出了一种基于主动检测虚拟时间反转(ADVTR)Capon 算法的方法。与传统的忽略多径效应而仅考虑直达波的被动目标估计方法不同,该方法更接近实际情况,充分考虑了多径信号传播模型;此外,增加了主动检测(AD)和虚拟时间反转(VTR)过程,利用主动检测来估计通道,并在源接收阵(SRA)接收到目标的反射信号后,在计算机中实现虚拟时间反转的聚焦。这两种方法的结合可以大大提高 SRA 的能量和目标方向估计的精度。本文利用流行的声场模拟工具 Bellhop 对所提出的模型进行了验证。与没有时间反转的传统 Capon 方法相比,仿真结果表明,ADVTR Capon 估计方法在分辨率和抑制旁瓣方面表现出色。它适用于低信噪比(SNR)条件下的目标 DOA 估计。此外,我们还在真实水箱实验中展示了 ADVTR Capon 估计方法的良好性能。