首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Application of cylindrical near-field measurement technique to the calibration of spaceborne radar antennas: NASA scatterometer and SeaWinds
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Application of cylindrical near-field measurement technique to the calibration of spaceborne radar antennas: NASA scatterometer and SeaWinds

机译:圆柱近场测量技术在星载雷达天线校准中的应用:NASA散射仪和SeaWinds

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Modern spaceborne radar scatterometers, such as the NASA scatterometer (NSCAT) and SeaWinds radar instruments, require precise determination of the normalized backscattered radar cross section within a few tenth of a decibel. This is needed to achieve the desired wind velocity and direction measurement accuracy of 2 m/s and 20/spl deg/, respectively. This high level of precision demands a priori prelaunch accurate knowledge and determination of the radar antenna's absolute gain and relative radiation patterns characteristics over wide angular range. Such characterizations may be performed on a far-field range, compact range, or in an indoor near-field measurement facility. Among the unique advantage of the near-field measurement is that most of the information of the radar antenna radiation properties can be obtained anywhere outside the near-field measurement surface. Two recently designed radar scatterometers are considered in this paper, NASA scatterometer (NSCAT) and SeaWinds, to demonstrate the utility of a newly completed cylindrical near-field measurement range. As an example of an advanced calibration methodology, the data based on a recently measured JPL/NASA scatterometer (NSCAT) radar antenna are used to experimentally demonstrate the role of the probe pattern compensation, probe multiple reflection effects, probe mispositioning effects, scan area truncation effects, etc. A measurement test on a standard gain horn (SGH) has been performed to achieve and verify the absolute gain calibration accuracy. A comparison between direct far-field measured data and those obtained from cylindrical near-field measurements for the SeaWinds radar antenna was found in excellent agreement. It is demonstrated that the near-field measurement technique is a viable approach in accurately characterizing the performance of spaceborne radar antennas.
机译:诸如NASA散射仪(NSCAT)和SeaWinds雷达仪器之类的现代星载雷达散射仪要求在十分之几分贝内精确确定归一化后向散射雷达截面。这是实现2 m / s和20 / spl deg /所需的风速和方向测量精度所必需的。如此高的精度要求先验先验的准确知识,并确定在宽角度范围内雷达天线的绝对增益和相对辐射方向图特性。这种表征可以在远场范围,紧凑范围或室内近场测量设备中进行。近场测量的独特优势之一是,大多数雷达天线辐射特性的信息都可以在近场测量表面之外的任何位置获得。本文考虑了两个最近设计的雷达散射仪,即NASA散射仪(NSCAT)和SeaWinds,以证明新近完成的圆柱形近场测量范围的实用性。作为高级校准方法的一个示例,基于最近测量的JPL / NASA散射仪(NSCAT)雷达天线的数据被用于通过实验证明探针图案补偿,探针多次反射效应,探针错位效应,扫描区域截断的作用已经对标准增益喇叭(SGH)进行了测量测试,以达到并验证绝对增益校准精度。发现直接远场测量数据与从SeaWinds雷达天线的圆柱近场测量获得的数据之间有很好的一致性。结果表明,近场测量技术是准确表征星载雷达天线性能的一种可行方法。

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