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Titlebook: Digital Sonar Design in Underwater Acoustics; Principles and Appli Qihu Li Book 2012 Zhejiang University Press, Hangzhou and Springer-Verla

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Ultra-lightweight Authenticationf the wet end and on our knowledge and understanding of the ocean environment and the behavior of underwater sound propagation. Therefore, sonar design is a combination of underwater acoustic physics, underwater acoustic engineering, radio electronics and transducer manufacture.
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Darren Hurley-Smith,Julio Hernandez-Castro noise, sensor technology, acoustic materials, the optimum extraction of weak signals, signal processing, the architecture of computer systems, human / machine engineering and artificial intelligence, etc. Therefore the sonar designer has to be familiar with these subjects and use them as pre-requis
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https://doi.org/10.1007/978-3-030-10591-4nar design ., and also provides the possibility to complete the tactical and technical specifications. But this is just one problem. In order to implement various functions of a digital sonar system, it is necessary to carefully manage the hardware and software, choose the right DSP chips and the al
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Mirosław Kutyłowski,Piotr Syga,Moti Yungarameters must be selected, and many decisions concerning acceptance / rejection techniques must be determined. We have to evaluate whether to increase the complexity of the equipment, if necessary, in order to enhance performance. And also we have to make a trade-off between various benefits or cos
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https://doi.org/10.1007/978-3-030-46828-6sign specific sonar, there are many questions and problems we face. These include unified design of the wet end and the dry end, limitations of the platform for sonar installation and software / hardware testing, etc.
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https://doi.org/10.1007/978-3-642-18290-7ATSTC; Digital sonar; Ocean engineering; Shallow water acoustics; System simulation; ZJUP
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Zhejiang University Press, Hangzhou and Springer-Verlag Berlin Heidelberg 2012
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