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Titlebook: Underwater Acoustic Data Processing; Y. T. Chan Book 1989 Kluwer Academic Publishers 1989 Wave.algorithms.artificial intelligence.classifi

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书目名称Underwater Acoustic Data Processing
编辑Y. T. Chan
视频video
丛书名称NATO Science Series E:
图书封面Titlebook: Underwater Acoustic Data Processing;  Y. T. Chan Book 1989 Kluwer Academic Publishers 1989 Wave.algorithms.artificial intelligence.classifi
描述This book contains the papers that were accepted for presentation at the 1988 NATO Advanced Study Institute on Underwater Acoustic Data Processing, held at the Royal Military College of Canada from 18 to 29 July, 1988. Approximately 110 participants from various NATO countries were in attendance during this two week period. Their research interests range from underwater acoustics to signal processing and computer science; some are renowned scientists and some are recent Ph.D. graduates. The purpose of the ASI was to provide an authoritative summing up of the various research activities related to sonar technology. The exposition on each subject began with one or two tutorials prepared by invited lecturers, followed by research papers which provided indications of the state of development in that specific area. I have broadly classified the papers into three sections under the titles of I. Propagation and Noise, II. Signal Processing and III. Post Processing. The reader will find in Section I papers on low frequency acoustic sources and effects of the medium on underwater acoustic propagation. Problems such as coherence loss due to boundary interaction, wavefront distortion and mult
出版日期Book 1989
关键词Wave; algorithms; artificial intelligence; classification; cognition; expert system; filtering; intelligenc
版次1
doihttps://doi.org/10.1007/978-94-009-2289-1
isbn_softcover978-94-010-7527-5
isbn_ebook978-94-009-2289-1Series ISSN 0168-132X
issn_series 0168-132X
copyrightKluwer Academic Publishers 1989
The information of publication is updating

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The Influence of Bubbles on Acoustic Propagation and Scattering screening of the sea surface due to bubble clouds with increasing frequency and sea state. The excess attenuation decreases with increasing depth below the surface and shows extremely high values within bubbles clouds.
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Generalized Mixture Noise Models for U.W.A.tection. Its performances are based in part upon the noise modelling [1]. The usual assumption of a white Gaussian noise is not valid [2]. Progresses in implementation appear to make possible the use of non-Gaussian noise models [3].
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Low Frequency Sector Scanner Using NLA array. The drive waveform for each amplifier is computer generated which allows a considerable amount of flexibility in the use of the transmitter. (Ref. 1) One possible mode of operation is to use the non-linear effect in the water to produce low frequency signals. Such a system has been tested re
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Acoustic Coherence Loss Due to Ocean Boundary Interactionsdary. Another is the spatial loss due to multipath in both constant-depth and variable-depth water, noting that for an array at the top of a slope it may largely be avoided by laying along the contours.
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