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Development of microwave and millimeter-wave integrated-circuit stepped-frequency radar sensors for surface and subsurface profiling.

机译:用于表面和亚表面轮廓分析的微波和毫米波集成电路步进频率雷达传感器的开发。

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摘要

Two new stepped-frequency continuous wave (SFCW) radar sensor prototypes, based on a coherent super-heterodyne scheme, have been developed using Microwave Integrated Circuits (MICs) and Monolithic Millimeter - Wave Integrated Circuits (MMICs) for various surface and subsurface applications, such as profiling the surface and subsurface of pavements, detecting and localizing small buried Anti-Personnel (AP) mines and measuring the liquid level in a tank. These sensors meet the critical requirements for subsurface and surface measurements including small size, light weight, good accuracy, fine resolution and deep penetration. In addition, two novel wideband microstrip quasi-TEM horn antennae that are capable of integration with a seamless connection have also been designed. Finally, a simple signal processing algorithm, aimed to acquire the in-phase (I) and quadrature (Q) components and to compensate for the I/Q errors, was developed using LabView.; The first of the two prototype sensors, named as the microwave SFCW radar sensor operating from 0.6--5.6-GHz, is primarily utilized for assessing the subsurface of pavements. The measured thicknesses of the asphalt and base layers of a pavement sample were very much in agreement with the actual data with less than +/-0.1-inch error. The measured results on the actual roads showed that the sensor accurately detects the 5-inch asphalt layer of the pavement with a minimal error of +/-0.25 inches. This sensor represents the first SFCW radar sensor operating from 0.6--5.6-GHz.; The other sensor, named as the millimeter-wave SFCW radar sensor, operates in the 29.72--35.7-GHz range. Measurements were performed to verify its feasibility as a surface and sub-surface sensor. The measurement results showed that the sensor has a lateral resolution of 1 inch and a good accuracy in the vertical direction with less than +/-0.04-inch error. The sensor successfully detected and located AP mines of small sizes buried under the surface of sand with less than 0.75 and 0.08 inches of error in the lateral and vertical directions, respectively. In addition, it also verified that the vertical resolution is not greater than 0.75 inches. This sensor is claimed as the first Ka-band millimeter-wave SFCW radar sensor ever developed for surface and subsurface sensing applications.
机译:利用微波集成电路(MIC)和单片毫米波集成电路(MMIC),开发了两种基于相干超外差方案的新的步进频率连续波(SFCW)雷达传感器原型,用于各种表面和地下应用,例如,对人行道的表面和地下进行轮廓分析,检测并定位小型埋入的杀伤人员地雷(AP)地雷并测量储罐中的液位。这些传感器满足地下和表面测量的关键要求,包括小尺寸,轻量,良好的精度,高分辨率和深穿透力。此外,还设计了两种能够与无缝连接集成的新型宽带微带准TEM喇叭天线。最后,使用LabView开发了一种简单的信号处理算法,旨在获取同相(I)和正交(Q)分量并补偿I / Q误差。这两个原型传感器中的第一个被称为微波SFCW雷达传感器,工作频率为0.6--5.6 GHz,主要用于评估路面的地下情况。路面样品的沥青和基础层的测得厚度与实际数据非常吻合,误差小于+/- 0.1英寸。在实际道路上的测量结果表明,该传感器能够以+/- 0.25英寸的最小误差准确地检测人行道的5英寸沥青层。该传感器代表第一个工作于0.6--5.6-GHz的SFCW雷达传感器。另一个传感器被称为毫米波SFCW雷达传感器,工作在29.72--35.7-GHz范围内。进行了测量以验证其作为表面和地下传感器的可行性。测量结果表明,该传感器的横向分辨率为1英寸,垂直方向的精度很高,误差小于+/- 0.04英寸。该传感器成功检测并定位了埋在沙子表面下的小尺寸AP地雷,其横向和垂直方向的误差分别小于0.75和0.08英寸。此外,还验证了垂直分辨率不大于0.75英寸。该传感器被称为有史以来为表面和地下传感应用开发的第一款Ka波段毫米波SFCW雷达传感器。

著录项

  • 作者

    Park, Joongsuk.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Electronics and Electrical.; Geophysics.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 193 p.
  • 总页数 193
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;地球物理学;
  • 关键词

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