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Research on Passive Positioning Technology of Time Reversal Mirror Based on Submerged Single Vector Sensor

机译:基于浸没单载体传感器的时间反镜被动定位技术研究

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The vector sensor is a new type of sonar in recent years, and the vector signal processing technology has also been developed. The vector sensor can simultaneously pick up the acoustic pressure and particle velocity information in the acoustic field at a common point. The vector sensor can suppress the isotropic noise field. Only a single vector sensor can complete the target azimuth estimation. However, single vector sensor cannot complete target positioning based on acoustic pressure and particle velocity information alone, and other environmental information needs to be combined. The time reversal mirror (TRM) technology in underwater acoustics comes from the phase conjugation method in optics, which is a positioning technology. The TRM is used in the field of active sonar firstly. With the gradual maturity of the modeling of multi-path acoustic propagation in the underwater waveguide environment, passive positioning technology based on virtual TRM can be realized. With the development of vector signal processing technology, the performance of TRM can be effectively improved. In recent years, research in the field of passive TRM has mainly focused on the underwater communication. Research on the passive positioning technology of TRM is lacking. Under the above background, this paper studies the passive positioning technology of TRM based on single vector sensor.
机译:近年来,矢量传感器是一种新型的声纳,也开发了矢量信号处理技术。矢量传感器可以在公共点同时拾取声场中的声压和粒子速度信息。矢量传感器可以抑制各向同性噪声场。只有一个矢量传感器可以完成目标方位角估计。然而,单个矢量传感器不能仅基于声压和粒子速度信息来完成目标定位,并且需要组合其他环境信息。水下声学中的时间逆转镜(TRM)技术来自光学中的相位缀合方法,这是一种定位技术。 TRM首先用于活动声纳领域。随着水下波导环境中的多路声学传播建模的逐渐成熟,可以实现基于虚拟TRM的被动定位技术。随着矢量信号处理技术的发展,可以有效地改善TRM的性能。近年来,在被动TRM领域的研究主要集中在水下沟通。缺乏TRM被动定位技术的研究。在上面的背景下,本文研究了基于单载体传感器的TRM的被动定位技术。

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