A directional monostatic borehole radar system

Matthias Boger, A. Glasmachers
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Abstract

A directional, monostatic borehole radar system was developed to overcome some disadvantages of the existing bistatic system. The challenges of combining transmitter and receiver in a single module are apparent, since one wants both high transmitting power and high receiver sensitivity. A dead time in the receiver response is unavoidable and thus prevents radar measurements at small distances. With sophisticated electronics consisting of e.g., variable gain control, advanced antenna switching and pulse generation, we are able to keep the dead time below 200 ns for a transmitted pulse with a center frequency of about 50 MHz. Other improvements allow for autonomous measurement mode. With our monostatic system, the probe length is reduced to 2.5 m as compared to a bistatic system of typical 13 m. In this paper, we present the improvements of the receiver electronics as well as the realization of the antenna switching and pulse generation. After a brief discussion of the disadvantages of a bistatic system and the basic theory, the implementations in hardware are discussed. Finally, some results of measurements are presented.
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定向单静态井眼雷达系统
为了克服现有双基地雷达系统的一些缺点,研制了定向单基地雷达系统。将发射器和接收器结合在一个模块中的挑战是显而易见的,因为人们需要高发射功率和高接收器灵敏度。接收机响应中的死区时间是不可避免的,因此妨碍了雷达在小距离上的测量。利用复杂的电子元件,例如可变增益控制,先进的天线开关和脉冲产生,我们能够将中心频率约为50 MHz的传输脉冲的死区时间保持在200 ns以下。其他改进允许自主测量模式。与典型的13米双基地系统相比,我们的单基地系统探头长度减少到2.5米。本文介绍了接收机电子系统的改进,以及天线切换和脉冲产生的实现。在简要讨论了双基地系统的缺点和基本原理之后,讨论了双基地系统在硬件上的实现。最后给出了一些测量结果。
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