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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing. >An ultrafast wide-band millimeter-wave (MMW) polarimetric radar for remote sensing applications
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An ultrafast wide-band millimeter-wave (MMW) polarimetric radar for remote sensing applications

机译:用于遥感应用的超高速宽带毫米波(MMW)极化雷达

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摘要

With the advent of high-frequency radio frequency (RF) circuits and components technology, millimeter-wave (MMW) radars are being proposed for a large number of military and civilian applications. Accurate and high-resolution characterization of the polarimetric radar backscatter responses of both clutter and man-made targets at MMW frequencies is essential for the development of radar systems and optimal detection and tracking algorithms. Toward this end, a new design is developed for ultrafast, wide-band, polarimetric, instrumentation radars that operate at 35 and 95 GHz. With this new design, the complete scattering matrix of a target (magnitude and phase) can be measured over a bandwidth of 500 MHz in less than 2 /spl mu/s. In this paper, the design concepts and procedures for the construction and calibration of these radars are described. In addition, the signal processing algorithm and data-acquisition procedure used with the new radars are presented. To demonstrate the accuracy and applicability of the new radars, backscatter measurements of certain points and distributed targets are compared with their analytical radar cross section (RCS) and previously measured /spl sigma//spl deg/ values, respectively, and good agreements are shown. These systems, which can be mounted on a precision gimbal assembly that facilitates their application as high-resolution imaging radar systems, are used to determine the MMW two-way propagation loss of a corn field for different plant moisture conditions.
机译:随着高频射频(RF)电路和组件技术的出现,毫米波(MMW)雷达被提议用于大量军事和民用应用。对毫米波频率上杂波和人造目标的极化雷达后向散射响应的准确和高分辨率表征,对于开发雷达系统以及优化检测和跟踪算法至关重要。为此,针对在35 GHz和95 GHz下运行的超快,宽带,极化,仪器雷达开发了一种新设计。通过这种新设计,可以在小于2 / spl mu / s的500 MHz带宽上测量目标的完整散射矩阵(幅度和相位)。在本文中,描述了用于构造和校准这些雷达的设计概念和过程。此外,还介绍了与新雷达一起使用的信号处理算法和数据采集程序。为了证明新雷达的准确性和适用性,将某些点和分布式目标的反向散射测量值与它们的分析雷达横截面(RCS)和先前测量的/ spl sigma // spl deg /值进行了比较,并显示了良好的协议。 。这些系统可以安装在精密的万向架组件上,有助于将其用作高分辨率成像雷达系统,用于确定不同植物水分条件下玉米田的MMW双向传播损失。

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