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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Measurement of Coordinates for a Cylindrical Target Using Times of Flight from a 1-Transmitter and 4-Receiver UWB Antenna System
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Measurement of Coordinates for a Cylindrical Target Using Times of Flight from a 1-Transmitter and 4-Receiver UWB Antenna System

机译:使用从1发射器和4接收器UWB天线系统的飞行时间测量圆柱形目标的坐标

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This article presents a new UWB impulse radar system consisting of a central radiating antenna (1.9-GHz center frequency, 2-GHz bandwidth) and four receiving antennas designed for the detection and location of dielectrically large objects with dimensions comparable to the spatial dimensions of the probe pulse. Together with the radar system, a solution method for determining the coordinates for detected targets is developed based on the time of flight (TOF) of the probing pulse along raypaths from the radiating antenna to the object, and then reflected to each of the receiving antennas. An algorithm based on the Pearson's correlation coefficient is used to accurately determine the TOF of the signals scattered by the object. The antenna geometry makes it possible to use simple trigonometry and Heron's formula, to calculate the coordinates of the reflecting bright spot on a target. The algorithm has been tested by numerical simulations and experiments with a cylindrical metallic object (diameter 10 cm) and a plastic-cased PMN-2 landmine buried in natural clay soil. For the experiment, GPR signals were acquired on a 4 x 4 square grid at 10-cm step from a height of about 30 cm above the ground. The system detected the test object in all positions and the positioning error in majority is equivalent to the object size.
机译:本文介绍了由中央辐射天线(1.9-GHz中心频率,2-GHz带宽)组成的新UWB脉冲雷达系统,以及设计用于检测和位置的四个接收天线,其具有与尺寸相当的尺寸与空间尺寸相当的尺寸探针脉冲。与雷达系统一起,基于从辐射天线到物体的射线脉冲的探测脉冲的飞行时间(TOF)的飞行时间来开发用于确定检测到的目标的坐标的解决方案方法,然后反映给每个接收天线。一种基于Pearson相关系数的算法用于精确地确定由对象散射的信号的TOF。天线几何形状使得可以使用简单的三角学和苍鹭的公式来计算目标上反射亮点的坐标。该算法已经通过数值模拟和圆柱形金属物体(直径10cm)的实验和埋在天然粘土土壤中的塑料套管PMN-2地雷的实验。对于实验,在4×4平方网格上以10cm的步长,从地面上方约30cm的高度获得GPR信号。系统在所有位置检测到测试对象,多数误差误差相当于对象大小。

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