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Range, velocity and immersion estimation of a moving target in a water-filled tank with an active sonar system

机译:有源声纳系统在充满水的水箱中移动目标的距离,速度和浸没估计

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The knowledge of the impulse response of the propagation channel is required for many underwater applications as communication, sonar detection and localization, marine mammals monitoring, etc. In the context of target classification, this impulse response informs about the relative motion between the source/receiver and the target through the Doppler effect. Knowing the emitted signal, the Doppler compression coefficient of each acoustic path can be estimated with the wideband ambiguity plan [1]-[3]. Warping operator based-filter and wideband ambiguity plan can be used to separate acoustic paths in order to remove interferences and estimate properly the target distance and speed [4]. This paper presents a complementary approach to jointly estimate the distance and speed of the target at a small speed with reasonable resolutions. The investigated sources are Binary Phase Shift Keying (BPSK), 22-Welch-Costas, and Pulse Train Frequency Modulation (PTFM) signal. Sources have a large Time-Bandwidth product (high TB) and provide high resolutions. For this reason, an echo model that takes into account a signal temporal compression (Doppler effect) can be used. A reduced-scale laboratory experiment was conducted to estimate the speed vector and depth of a moving target. Results for speed vectors are compared for the three different sources. A ray back propagation algorithm was used and results show correct estimation of the target depth.
机译:对于许多水下应用(例如通信,声纳检测和定位,海洋哺乳动物监视等),都需要了解传播通道的脉冲响应。在目标分类的情况下,此脉冲响应会通知源/接收器之间的相对运动。和目标通过多普勒效应。知道了发射信号,就可以利用宽带歧义计划[1]-[3]来估算每个声径的多普勒压缩系数。可以使用基于翘曲算子的滤波器和宽带模糊度计划来分离声波路径,以消除干扰并正确估计目标距离和速度[4]。本文提出了一种补充方法,可以以合理的分辨率以较小的速度共同估算目标的距离和速度。研究的信号源是二进制相移键控(BPSK),22-Welch-Costas和脉冲序列调频(PTFM)信号。信号源具有较大的时间带宽乘积(高TB),并提供高分辨率。因此,可以使用考虑了信号时间压缩(多普勒效应)的回波模型。进行了缩小规模的实验室实验,以估计运动目标的速度矢量和深度。比较了三个不同来源的速度向量结果。使用了射线反向传播算法,结果表明对目标深度的正确估计。

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