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一种基于单像素微波辐射计的新型热物体计数传感器:概念验证与物联网视角

A Novel Sensor Based on a Single-Pixel Microwave Radiometer for Warm Object Counting: Concept Validation and IoT Perspectives.

作者信息

Alimenti Federico, Bonafoni Stefania, Roselli Luca

机构信息

Department of Engineering, University of Perugia, via G. Duranti 93, 06125 Perugia, Italy.

出版信息

Sensors (Basel). 2017 Jun 14;17(6):1388. doi: 10.3390/s17061388.

Abstract

Controlled measurements by a low-cost single-pixel microwave radiometer operating at 12.65 GHz were carried out to assess the detection and counting capability for targets warmer than the surroundings. The adopted reference test targets were pre-warmed water and oil; and a hand, both naked and wearing a glove. The results showed the reliability of microwave radiometry for counting operations under controlled conditions, and its effectiveness at detecting even warm targets masked by unheated dielectric layers. An electromagnetic model describing the scenario sensed by the radiometer antenna is proposed, and comparison with the experimental observations shows a good agreement. The measurements prove that reliable counting is enabled by an antenna temperature increment, for each target sample added, of around 1 K. Starting from this value, an analysis of the antenna filling factor was performed to provide an instrument useful for evaluating real applicability in many practical situations. This study also allows the direct people counting problem to be addressed, providing preliminary operational indications, reference numbers and experimental validation.

摘要

使用一台工作在12.65GHz的低成本单像素微波辐射计进行了受控测量,以评估对温度高于周围环境的目标的检测和计数能力。采用的参考测试目标是预加热的水和油,以及一只裸露的手和戴着手套的手。结果表明,在受控条件下,微波辐射测量法在计数操作方面具有可靠性,并且即使对于被未加热介电层掩盖的温暖目标也能有效检测。提出了一个描述辐射计天线所感测场景的电磁模型,与实验观测结果的比较显示出良好的一致性。测量结果证明,每添加一个目标样本,天线温度增加约1K就能实现可靠计数。从这个值开始,对天线填充因子进行了分析,以提供一种在许多实际情况下评估实际适用性有用的仪器。这项研究还使得能够解决直接的人数统计问题,提供初步的操作指示、参考数值和实验验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8395/5492221/fedf47eabb10/sensors-17-01388-g001.jpg

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