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首页> 外文期刊>Geoscience and Remote Sensing Letters, IEEE >Frequency Estimation of Human Presence Detection Signals From a Scanning-Beam Millimeter-Wave Correlation Radiometer
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Frequency Estimation of Human Presence Detection Signals From a Scanning-Beam Millimeter-Wave Correlation Radiometer

机译:扫描束毫米波相关辐射计对人体存在检测信号的频率估计

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摘要

The scanning-beam millimeter-wave correlation radiometer has recently been applied to human presence detection and classification. The natural frequency of the scanning-beam correlation radiometer signal, called the fringe frequency, results from human presence in the scanning beam and must be known in order to filter the signal and provide the best possible radiometric sensitivity. This letter presents new results in estimating the fringe frequency of a 27.4-GHz scanning-beam correlation radiometer by comparing different spectral estimation techniques, including CLEAN, RELAX, PHD, MUSIC, and ESPRIT. Experiments were performed with a human placed beyond the mean detection range of the sensor, resulting in signal power levels below the average power expected in an operational environment. Results show good performance for the CLEAN and RELAX algorithms at fringe frequencies in the range of 15–60 Hz and for the MUSIC and ESPRIT algorithms at fringe frequencies in the range of 60–155 Hz.
机译:扫描束毫米波相关辐射计最近已被用于人类存在的检测和分类。扫描光束相关辐射计信号的固有频率(称为条纹频率)是由人体在扫描光束中的存在而产生的,因此必须知道该固有频率,以便对信号进行滤波并提供最佳的辐射敏感性。这封信提出了通过比较不同的频谱估计技术(包括CLEAN,RELAX,PHD,MUSIC和ESPRIT)来估计27.4 GHz扫描束相关辐射计的边缘频率的新结果。在超出传感器平均检测范围的人体上进行实验,导致信号功率水平低于操作环境中预期的平均功率。结果表明,CLEAN和RELAX算法在15–60 Hz范围的边缘频率下以及MUSIC和ESPRIT算法在60–155 Hz的边缘频率下具有良好的性能。

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