Abstract

The integration of underwater detection and communication uses communication signals to detect a target actively, but the Doppler effect deteriorates the parameter estimation performance of the integrated system. To eliminate the influence of the Doppler effect, a joint Doppler estimation and compensation method based on spectrum zooming and correction is proposed. Firstly, the synchronization signal is used to obtain the signal receiving delay and intercept the single-frequency signal segment in the received signal. Then, the discrete Fourier transform is used to find the frequency that corresponds to the maximum amplitude of the single-frequency signal segment. Finally, the frequency spectrum is refined and corrected within the range near the frequency. The Doppler factor is estimated and the received signal is compensated by the Doppler estimation value. The simulation results show that the proposed method improves Doppler factor estimation accuracy, increases the cross-correlation processing gain and improves DOA (direction of arrival) estimation performance, thus being robust to different Doppler effects.

Highlights

  • Doppler estimation and compensation method for underwater target active detection based on communication signal

  • To elimi⁃ nate the influence of the Doppler effect, a joint Doppler estimation and compensation method based on spectrum zooming and correction is proposed

  • The simulation results show that the proposed method improves Doppler factor estimation accuracy, increases the cross⁃correlation processing gain and improves DOA estimation performance, being robust to different Doppler effects

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Summary

Introduction

对 xm-cw( t) 加 Hanning 窗,并作 N 点 DFT 求得最 大幅值对应频率 fdft ; 3. 利用估计的多普勒因子对阵列接收信号进行多 普勒补偿,并利用互相关 MUSIC 算法对补偿后的阵 列接收信号进行 DOA 参数估计。 对于单目标,目标 入射角 为 14°。 对于双目标, 目标入射角分别为 [ -4° 4°] 。 在不同信噪比 RSN 为 18 dB 到 6 dB,以 步进 2 dB 增加,分别仿真多普勒因子为 0.006,0.01 以及 0.032 情况下,不同算法多普勒估计与补偿对 DOA 估计性能的影响,分别进行 1 000 次蒙特卡洛 仿真实验。 Analysis on the key technology of integrated underwater detection and communication [ J] .

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