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INTEGRATED RADAR subsurface sounding

机译:集成雷达地下探测

摘要

The invention relates to subsurface radar and may be used to build geological sections, determining the position of the groundwater, determining the thickness of the structural layers of the pavement, determining inhomogeneities and inclusions boundaries concrete structures, measuring the length of the piles. An object of the utility model is a direct measurement of the brightness temperature of the upper layers of the subsurface soils during subsequent probing with accurate measurement of the thickness of the structural layers of the pavement, the depth of geological engineering elements for the location of inhomogeneities and inclusions concrete structures boundaries. This object is achieved in that an integrated radar subsurface probing comprising a receiving antenna, an electronic switch connected in series videopulses oscillator and a transmitting antenna sequentially connected amplifier and stroboscopic converter device synchronization and signal processing, a first output connected to the control input of the stroboscopic converter and the input videopulses generator, and the first signal input of the sync signal processing device and a connected to the output stroboscopic converter differs from the closest analog by the fact that in the radar additionally administered serially connected quadratic detector and integrator, thus, the output of the receiving antenna is connected to the input of the amplifier, the electronic key input connected to the output of the amplifier, the integrator output is connected to the second synchronizing signal input and a signal processing device, and the control input of the electronic key connected to the second output synchronization apparatus and processing sig catch.
机译:本发明涉及地下雷达,并且可以用于构造地质部分,确定地下水的位置,确定人行道的结构层的厚度,确定混凝土结构的不均匀性和夹杂物边界,测量桩的长度。本实用新型的目的是在随后的探测过程中直接测量地下土壤上层的亮度温度,并精确测量人行道结构层的厚度,不均匀位置的地质工程元素的深度。和包含物的混凝土结构边界。该目的的实现是通过一种集成的雷达地下探测,该探测包括接收天线,串联连接的视频脉冲振荡器的电子开关和依次连接的放大器和频闪转换器设备的同步和信号处理的发射天线,第一输出连接至雷达的控制输入频闪观测器和输入视频脉冲发生器,以及同步信号处理设备的第一信号输入以及与频闪观测器连接的输出,与最接近的模拟信号有所不同,因为在雷达中还额外设置了串联的二次检波器和积分器,因此,接收天线的输出连接到放大器的输入,电子键输入连接到放大器的输出,积分器输出连接到第二同步信号输入和信号处理设备,并且控制输入电子钥匙连接到第二个输出同步装置并处理信号捕捉。

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