首页> 外文学位 >Design, fabrication, and demonstration of low-mass, low-power, small-volume, direct detection millimeter-wave radiometers at 92 and 130 GHz.
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Design, fabrication, and demonstration of low-mass, low-power, small-volume, direct detection millimeter-wave radiometers at 92 and 130 GHz.

机译:低质量,低功率,小体积,直接检测的92 GHz和130 GHz毫米波辐射计的设计,制造和演示。

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摘要

Advances in future ocean satellite altimetry missions are needed to meet oceanographic and hydrological objectives. These needs include accurately determining the sea surface height (SSH) on spatial scales of 10 km and larger, as well as monitoring the height of the world's inland bodies of water and the flow rate of rivers. The Surface Water and Ocean Topography (SWOT) mission was recommended by the National Research Council's Earth Science Decadal Survey and selected by the National Aeronautics and Space Administration as an accelerated Tier-2 mission to address these needs. Current surface altimetry missions use nadir pointing 18-37 GHz microwave radiometers to correct for errors in SSH due to wet-tropospheric path delay. Using current antennas at these frequencies, oceanic measurements include significant errors within 50 km of coastlines due to varying emissivity and temperature of land. Higher frequencies (90-170 GHz) can provide proportionally smaller footprints for the same antenna size. In turn, this provides improved retrievals of wet-tropospheric path delay near the coasts.;This thesis will focus on the design, fabrication, and testing of two direct detection radiometers with internal calibration at center frequencies of 92 and 130 GHz. Component design, testing and integration of the radiometers using multi-chip modules are discussed. The performance of these radiometers is characterized, including noise figure, internal calibration and long-term stability. These performance parameters, along with their mass, volume, and power consumption, will be used as the basis for the development of future airborne and space-borne millimeter-wave direct detection radiometers with internal calibration.
机译:为了实现海洋学和水文目标,需要在未来的海洋卫星测高任务中取得进展。这些需求包括在10 km或更大的空间尺度上准确确定海平面高度(SSH),以及监视世界内陆水域的高度和河流的流量。国家研究委员会的地球科学十年调查推荐了地表水和海洋地形(SWOT)任务,并被美国国家航空航天局选择为满足这些需求的第2层加速任务。当前的地面测高任务使用天底指向18-37 GHz微波辐射计来纠正由于对流层湿路径延迟而导致的SSH错误。使用当前频率的这些天线,由于辐射率和陆地温度的变化,海洋测量结果会在海岸线50公里以内出现重大误差。对于相同的天线尺寸,较高的频率(90-170 GHz)可以按比例提供较小的封装。反过来,这提供了对海岸附近湿对流层路径延迟的改进的检索。;本文将着重于两个直接检测辐射计的设计,制造和测试,这些辐射计在92和130 GHz的中心频率进行内部校准。讨论了使用多芯片模块的辐射计的组件设计,测试和集成。这些辐射计的性能包括噪声系数,内部校准和长期稳定性。这些性能参数以及它们的质量,体积和功耗,将用作开发未来带有内部校准的机载和机载毫米波直接检测辐射计的基础。

著录项

  • 作者

    Albers, Darrin.;

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Engineering Electronics and Electrical.;Remote Sensing.
  • 学位 M.S.
  • 年度 2012
  • 页码 207 p.
  • 总页数 207
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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