水声技术:近期发展综述

K. Foote
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引用次数: 22

摘要

科学与技术的关系是相互推动的,这是不言自明的。这在整个海洋工程和海洋科学领域经常得到说明。这是对过去十年中水下声学的特殊情况进行回顾的基础。根据OES水下声学技术委员会的兴趣,总结了发展情况:(1)声学仪器的设计、制造和测试,如换能器、换能器阵列、水听器、声源、应答器和记录系统;(二)以主动和被动声纳系统为形式的声学仪器,用于海底测绘、水下成像、海洋测量、生物有机体的观察和量化、目标监视和跟踪;(3)对影响声纳系统性能的多径到达结构、散射、混响和噪声等海洋声学参数进行建模和预测。水声通信、导航、定位等相关学科;声纳图像处理;而海洋声学参数的推断则在单独的、独立的综述中讨论。这篇综述是为庆祝欧洲经委会成立40周年而作的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Underwater acoustic technology: review of some recent developments
It is a truism to say that the relationship of science and technology is pushpull. This is illustrated regularly throughout the fields of ocean engineering and ocean science. It underlies this review for the particular case of underwater acoustics over the past decade. Developments are summarized apropos of the interests of the OES Technology Committee on Underwater Acoustics: (1) design, fabrication, and testing of acoustic instrumentation such as transducers, transducer arrays, hydrophones, sound sources, transponders, and recording systems; (2) use of acoustic instrumentation in the form of active and passive sonar systems for such applications as bottom mapping, underwater imaging, ocean measurement, observation and quantification of biological organisms, target surveillance and tracking; (3) modeling and prediction of ocean acoustic parameters, such as multipath arrival structure, scattering, reverberation, and noise, which influence sonar system performance. Related topics such as underwater acoustic communication, navigation, and positioning; sonar image processing; and inference of ocean acoustic parameters are addressed in separate, independent reviews. This review is a contribution to the 40th anniversary celebration of the OES.
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