合成孔径水声底土剖面仪

A. Vagin, A. S. Vorotyntseva
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引用次数: 0

摘要

介绍。声波剖面是研究海底地质构造的常用方法。为此,可以使用工作频率范围为1…14 kHz的低频声学剖面仪。然而,在较低的工作频率下,实现所需分辨率的困难出现了。提高水声装置的角分辨率,特别是在载体运动方向上的角分辨率问题,仍然是海底物体搜索和探测以及海底土壤结构研究中的一个优先任务。可以通过几种方法来提高角分辨率,包括基于反射信号相位变化规律的天线孔径合成算法。该方法适用于高分辨率水声仪器的设计。论证了基于声剖面仪天线孔径合成算法构建底土剖面仪的可能性,以及提高其角分辨率的可能性。材料和方法。利用合成孔径侧扫声纳的基础数据,对天线装置的构造和雷达系统无线电波激发方法进行了研究。研究了合成底土声剖面仪天线孔径的可能性。针对弹道信号的相位畸变及其对声呐图像的影响,研究了天线孔径的合成算法。分析了弹道信号处理的基本原理。提出了一种在执行搜索和测量任务时提高声学剖面仪分辨率的方法。所提出的剖面装置声学部分的设计可用于开发高角分辨率的水声搜索和测量装置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydroacoustic Bottom Soil Profiling Device with Synthetic Aperture
Introduction. Acoustic profiling is a conventional method for studying the geological structure of the seabed. To this end, a low-frequency acoustic profiler with an operating frequency range of 1…14 kHz can be used. However, under lower operating frequencies, the difficulty of achieving the required resolution arises. The problem of improving the angular resolution of a hydroacoustic device, particularly in the direction of the carrier movement, remains to be a priority task in the search and detection of objects on the seabed, as well as the study of the bottom soil structure. Angular resolution can be improved through several approaches, including an algorithm for synthesizing the antenna aperture based on the law of the phase change of the reflected signal. This approach is relevant in the design of highresolution hydroacoustic tools.Aim. To demonstrate the possibility of constructing a bottom soil profiling device, as well as the possibility of increasing its angular resolution based on an algorithm for synthesizing the antenna aperture of an acoustic profiler.Materials and methods. The study employed the groundwork data obtained for side-scan sonars with a synthetic aperture in terms of constructing an antenna device and the methods of radio-wave excitation developed for radar systems.Results. The possibility of synthesizing the antenna aperture for an acoustic profiler of the bottom soil was studied. An algorithm for synthesizing the antenna aperture was investigated along with phase distortions of the trajectory signal and their influence on the sonar image. The fundamental principles of processing the trajectory signal were considered.Conclusion. An approach to increasing the resolution of an acoustic profiler when performing search and survey tasks is proposed. The proposed design of the acoustic part of a profiling device can be used in the development of search and survey hydroacoustic devices with a high angular resolution.
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