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ntegration and Miniaturization of a Ka-band Stepped Frequency Radar for Un-manned Aerial Vehicle Applications

机译:无人飞行器应用的Ka波段步进频率雷达的集成和小型化

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摘要

In this paper, we present a highly integrated and miniaturized Ka-band stepped frequency radar that can be used for unmanned aerial vehicle applications. The microwave portion of the radar is integrated onto a low temperature co-fired ceramic multi-chip module, utilizing a triple-print gold thick-film metallization, allowing for wire-bonding and solder capabilities. In addition to miniaturization, a metal seal frame was designed to surround the individual microwave circuits providing isolation barriers to reduce electromagnetic coupling within the system and disturbances from outside interferers. The radar implementation is based on a previous Ka-band radar system designed at the University of Oklahoma using connectorized commercial-off-the-shelf components. This new design results in a 64 times size reduction in foot-print area, half the power consumption, and greater than a 10 times weight reduction compared to the previous implementation. To ensure desired system performance is maintained, both radars were subjected to a direct loop-back test and the intermediate frequency output spectrums, prior to base-band down-conversion, are recorded and compared. Both outputs contain a spectrally pure tone at 12.8 GHz near the expected power indicating that the new radar performs as intended and is comparable to its predecessor. The packaging techniques presented show extreme promise for system integration and miniaturization of future radar and communication systems following the trend to reduce size, weight, and power.
机译:在本文中,我们提出了一种高度集成且小型化的Ka波段步进频率雷达,可用于无人机应用。雷达的微波部分集成到低温共烧陶瓷多芯片模块上,利用三重​​印刷的金厚膜金属化技术实现了引线键合和焊接功能。除小型化外,还设计了一个金属密封框架,以包围各个微波电路,从而提供隔离屏障,以减少系统内的电磁耦合和来自外部干扰源的干扰。该雷达的实现基于俄克拉荷马大学以前设计的Ka波段雷达系统,该系统使用连接的现成组件进行连接。与以前的实现相比,这种新设计使占地面积减小了64倍,功耗降低了一半,重量减轻了10倍以上。为了确保维持所需的系统性能,两个雷达都经过了直接环回测试,并且在基带下变频之前记录并比较了中频输出频谱。两个输出均在12.8 GHz的预期功率附近包含频谱纯净的音频,表明新雷达按预期工作并且与其前身相当。随着减小尺寸,重量和功率的趋势,提出的包装技术对未来的雷达和通信系统的系统集成和小型化显示出极大的希望。

著录项

  • 来源
    《Advancing Microelectronics》 |2018年第2期|6-10|共5页
  • 作者单位

    University of Oklahoma, School of Electrical and Computer Engineering Advanced Radar Research Center, 3190 Monitor Ave., Norman, OK 73071;

    University of Oklahoma, School of Electrical and Computer Engineering Advanced Radar Research Center, 3190 Monitor Ave., Norman, OK 73071;

    University of Oklahoma, School of Electrical and Computer Engineering Advanced Radar Research Center, 3190 Monitor Ave., Norman, OK 73071;

    Department of Energy's Kansas City National Security Campus,14510 Botts Rd., Kansas City, MO 64147;

    Department of Energy's Kansas City National Security Campus,14510 Botts Rd., Kansas City, MO 64147;

    Department of Energy's Kansas City National Security Campus,14510 Botts Rd., Kansas City, MO 64147;

    Department of Energy's Kansas City National Security Campus,14510 Botts Rd., Kansas City, MO 64147;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    low temperature co-fired ceramic; stepped frequency radar; system integration; un-manned aerial vehicle;

    机译:低温共烧陶瓷;步进频率雷达;系统集成;无人机;

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