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Decision of problem of measurement of phase shift an echo signals for recognition of underwater objects

机译:确定相移回波信号以测量水下物体的问题

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The staff of the Hydrolocation Laboratory of the Department of Radio Engineering of Novosibirsk State Technical University have worked in the field of the investigation of some problems of short-range hydrolocation and of the design of short-range sonars (SRS) for many years . Such systems are widely applied for work at internal water tracks and shallow sea owing to perspective exploitation of the sea shelf. They are used to solve different problems concerning navigation, examination of the bottom, mapping, digging of the bottom, during building and emergency works on the bottom, etc. A very important role is played by SRS, particularly side-looking sonars (SLS), when various underwater objects (UO), natural or manufactured, probably of small dimensions, sometimes placed under a layer of silt, on the bottom or near it are located and identifying; also, when the bottom ground is examined and its laminated structure is analyzed. A number of algorithms and devices for automatic identification of the UO are designed and developed in the laboratory. Various signs of the echo signals from the objects, particularly pulse structure, pulse length, the estimate of the moments of the random amplitudes, the form of the histograms, shade signal from the UO etc. The traditional methods and devices of location the objects use only the information about the amplitudes of the echo signals or about the amplitude-frequency responses (AFR) of reflection of the UO. Additional information about UO which allows to increase the reliability of their identification one may obtain by using the phase-frequency response (PFR) of reflection or, at least, a phase shift (PS) of the echo signal reflected by an UO.
机译:新西伯利亚国立技术大学无线电工程系加水实验室的工作人员多年来一直在研究短程加水的一些问题和短程声纳(SRS)的设计领域。由于对海架的透视开发,这样的系统被广泛应用于内部水道和浅海中的工作。它们用于解决与导航,底部检查,制图,底部挖掘,建筑物的建造以及底部的紧急工作等不同的问题。SRS扮演着非常重要的角色,特别是侧面声纳(SLS) ,当找到并标识出可能是小尺寸的,有时是放在淤泥层下,底部或附近的各种天然或人造水下物体(UO)时,应加以识别;同样,当检查底部地面并分析其叠层结构时。在实验室中设计和开发了许多用于自动识别UO的算法和设备。来自物体的回波信号的各种信号,特别是脉冲结构,脉冲长度,随机振幅矩的估计,直方图的形式,来自UO的阴影信号等。物体的传统定位方法和设备使用仅包含有关回波信号幅度或有关UO反射幅度-频率响应(AFR)的信息。可以通过使用反射的相频响应(PFR)或至少使用UO反射的回波信号的相移(PS)来获得有关UO的其他信息,这些信息可以提高其识别的可靠性。

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