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Photonically enabled Ka-band radar and infrared sensor subscale testbed

机译:具有光子功能的Ka波段雷达和红外传感器子秤测试台

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摘要

A subscale radio frequency (RF) and infrared (IR) testbed using novel RF-photonics techniques for generating radar waveforms is currently under development at The Johns Hopkins University Applied Physics Laboratory (JHU/APL) to study target scenarios in a laboratory setting. The linearity of Maxwell's equations allows the use of millimeter wavelengths and scaled-down target models to emulate full-scale RF scene effects. Coupled with passive IR and visible sensors, target motions and heating, and a processing and algorithm development environment, this testbed provides a means to flexibly and cost-effectively generate and analyze multi-modal data for a variety of applications, including verification of digital model hypotheses, investigation of correlated phenomenology, and aiding system capabilities assessment. In this work, concept feasibility is demonstrated for simultaneous RF, IR, and visible sensor measurements of heated, precessing, conical targets and of a calibration cylinder. Initial proof-of-principle results are shown of the Ka-band subscale radar, which models S-band for 1/10th scale targets, using stretch processing and Xpatch models.
机译:约翰·霍普金斯大学应用物理实验室(JHU / APL)目前正在开发一种使用新型RF光子学技术生成雷达波形的亚规模射频(RF)和红外(IR)测试台,以研究实验室环境中的目标场景。 Maxwell方程的线性允许使用毫米波长和按比例缩小的目标模型来模拟满量程RF场景效果。结合无源红外和可见光传感器,目标运动和加热以及处理和算法开发环境,该测试平台提供了一种灵活而经济高效地生成和分析多种模式数据的方法,以用于各种应用,包括数字模型验证假设,相关现象学调查以及辅助系统功能评估。在这项工作中,论证了同时进行加热,进动,锥形目标和校准筒的RF,IR和可见传感器测量的概念可行性。最初的原理证明结果显示在Ka波段子尺度雷达上,该雷达使用拉伸处理和Xpatch模型为1/10尺度目标建模S波段。

著录项

  • 来源
  • 会议地点 Amsterdam(NL)
  • 作者单位

    The Johns Hopkins University Applied Physics Laboratory, 11100 Johns Hopkins Road, Laurel, MD, USA 20723-8099;

    The Johns Hopkins University Applied Physics Laboratory, 11100 Johns Hopkins Road, Laurel, MD, USA 20723-8099;

    The Johns Hopkins University Applied Physics Laboratory, 11100 Johns Hopkins Road, Laurel, MD, USA 20723-8099;

    The Johns Hopkins University Applied Physics Laboratory, 11100 Johns Hopkins Road, Laurel, MD, USA 20723-8099;

    The Johns Hopkins University Applied Physics Laboratory, 11100 Johns Hopkins Road, Laurel, MD, USA 20723-8099;

    The Johns Hopkins University Applied Physics Laboratory, 11100 Johns Hopkins Road, Laurel, MD, USA 20723-8099;

    The Johns Hopkins University Applied Physics Laboratory, 11100 Johns Hopkins Road, Laurel, MD, USA 20723-8099;

    The Johns Hopkins University Applied Physics Laboratory, 11100 Johns Hopkins Road, Laurel, MD, USA 20723-8099;

    The Johns Hopkins University Applied Physics Laboratory, 11100 Johns Hopkins Road, Laurel, MD, USA 20723-8099;

    The Johns Hopkins University Applied Physics Laboratory, 11100 Johns Hopkins Road, Laurel, MD, USA 20723-8099;

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

    Infrared; Millimeter Wave; Radar; RF Photonics; Subscale Targets; Visible;

    机译:红外线;毫米波雷达;射频光子学次级规模目标;可见;

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