首页> 外国专利> RADIO-HYDROACOUSTIC SYSTEM FOR PARAMETRIC RECEPTION OF WAVES OF SOURCES AND PHENOMENA OF ATMOSPHERE, OCEAN AND EARTH'S CRUST IN MARINE ENVIRONMENT

RADIO-HYDROACOUSTIC SYSTEM FOR PARAMETRIC RECEPTION OF WAVES OF SOURCES AND PHENOMENA OF ATMOSPHERE, OCEAN AND EARTH'S CRUST IN MARINE ENVIRONMENT

机译:海洋环境中大气,海洋和地壳的波源和现象波参数接收的无线电水声系统

摘要

FIELD: hydrophysics.;SUBSTANCE: invention relates to hydrophysics, geophysics and radio physics and can be used when generating spatially developed pervious radio hydroacoustic monitoring systems of acoustic and hydrodynamic and electromagnetic fields generated by artificial and natural sources, hazardous effects of atmosphere, ocean and Earth's crust in frequency band covering hundreds-tens-units-fraction of Herz, including extremely low frequency vibrations of moving objects and irregularities of marine environment. Summary: radio-hydroacoustic system for parametric reception of waves of sources and effects of atmosphere, ocean and Earth's crust in marine environment includes: installed on opposite boundaries of controlled medium radiating and at least three receiving acoustic transducers connected to radiating and receiving paths, respectively, formed between them three zones of nonlinear interaction pervious and information waves. Proposed radio-hydroacoustic system differs by fact that working zone of nonlinear interaction and parametric conversion pervious and information waves formed in vertical plane medium as multi-beam spatially developed transmissive parametric antenna. For this purpose there are three omnidirectional radiating transducers, vertically arranged in centre of water area and installed on axis, below and above axis of underwater audio channel (UAC). Receiving transducers are integrated into three identical units arranged in vertical plane along isosceles triangles, which are arranged relative to axis UAC similarly radiating units and are arranged in circle and (or) perimeter on opposite boundary of water area. At that, output of receiving channel through transmitting radio unit is connected to information-analytical centre, which output via radio channel is connected to radiating channel signal generation system. Multichannel scanning parametric system is formed as complex vertical multi-beam parametric antennas, arranged in circle or perimeter of water area through 45° and directed radially from radiating center to periphery. Distance between acoustic transducers receiving units in vertical plane is set in accordance with correlation characteristics of structure of transmissive acoustic field. Transmissive radio-hydroacoustic system can be scaled (increased) by combination of measured information with similar subsystems, formed on adjacent water areas, in information-analytical centre using radio communication channels. Frequency band of received waves of different physical nature is hundreds-tens-units-fraction of Herz, including extremely low frequency vibrations of moving objects as whole.;EFFECT: technical outcome is far parametric reception in marine environment waves of different physical nature (acoustic, electromagnetic, hydrodynamic) generated by natural and artificial sources, phenomena and processes of atmosphere, ocean and Earth's crust.;4 cl, 15 dwg
机译:领域:本发明涉及水物理学,地球物理学和无线电物理学,并且可以用于产生由人工和自然源产生的声,水动力和电磁场,大气,海洋和海洋的有害影响而在空间上发展的透水无线电水声监测系统。地壳覆盖了几十个赫兹分数的数百个单位,包括运动物体的极低频振动和海洋环境的不规则性。简介:用于在海洋环境中对源波以及大气,海洋和地壳进行参数接收的无线电水声系统,包括:安装在受控介质辐射的相对边界上,并且至少三个分别连接到辐射和接收路径的接收声换能器在它们之间形成了三个非线性相互作用的渗透波和信息波区域。所提议的无线电水声系统的不同之处在于,非线性相互作用和参数转换的工作区域是可渗透的,并且在垂直平面介质中形成的信息波是多波束空间开发的透射参数天线。为此,有三个全向辐射换能器,它们垂直排列在水域中心,并安装在水下音频通道(UAC)的轴上,下和上轴上。接收换能器被集成到沿着等腰三角形在垂直平面上排列的三个相同的单元中,它们相对于UAC轴类似地排列,并以辐射单元的形式并以圆形和(或)周长的方式布置在水域的相对边界上。在此,通过发射无线电单元的接收信道的输出连接到信息分析中心,该信息分析中心通过无线电信道的输出连接到辐射信道信号发生系统。多通道扫描参数系统形成为复杂的垂直多波束参数天线,在水域的圆周或周长内成45°角排列,并从辐射中心到外围呈放射状。根据透射声场的结构的相关特性来设定在垂直平面中的声换能器接收单元之间的距离。通过使用无线电通信信道,在信息分析中心,通过将测得的信息与在相邻水域上形成的类似子系统相结合,可以缩放(增加)透射无线电水声系统。物理性质不同的接收波的频带为几十个Herz分数,包括整个运动物体的极低频振动。效果:技术成果是在不同物理性质的海洋环境波中进行远参数接收(声学,电磁,流体动力),是由自然和人工来源,大气,海洋和地壳的现象和过程产生的; 4 cl,15 dwg

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