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Applying Millimeter-Wave Correlation Radiometry to the Detection of Self-Luminous Objects at Close Range

机译:毫米波相关辐射技术在近距离自发光物体检测中的应用

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摘要

The novel application of correlation radiometer theory to the detection of self-luminous objects at close range is presented in the context of human presence detection. Modifications and additions to techniques developed in radio astronomy and remote sensing for close-range terrestrial situations are developed and discussed. To demonstrate the new techniques, a Ka-band correlation radiometer is presented, which detects the presence of a stationary human in an outdoor environment. The correlation radiometer fringe frequency is analyzed in the context of the scanning beam detection system and is estimated using MUSIC and ESPRIT. The visibility, sensitivity, spatial resolution, and dwell time of the system are analyzed. Finally, the correlation response is included in a statistical classifier in conjunction with responses from total power radiometers. Experimental results show improved detection capability over using the total power sensors alone.
机译:在人类存在检测的背景下,提出了相关辐射计理论在近距离自发光物体检测中的新应用。针对近距离地面情况,对射电天文和遥感技术的发展进行了修改和补充。为了演示新技术,提出了一种Ka波段相关辐射计,它可以检测室外环境中静止的人的身影。在扫描束检测系统的背景下分析了相关辐射计的条纹频率,并使用MUSIC和ESPRIT对其进行了估算。分析了系统的可见性,灵敏度,空间分辨率和停留时间。最后,相关响应与总功率辐射计的响应一起包含在统计分类器中。实验结果表明,与仅使用总功率传感器相比,检测能力得到了提高。

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