Total power radiometer for medical sensor applications using matched and mismatched noise sources
- 발행기관 서강대학교 일반대학원
- 지도교수 정진호
- 발행년도 2018
- 학위수여년월 2018. 2
- 학위명 석사
- 학과 및 전공 일반대학원 전자공학과
- 실제URI http://www.dcollection.net/handler/sogang/000000062982
- 본문언어 영어
- 저작권 서강대학교 논문은 저작권보호를 받습니다.
초록/요약
This paper presents a simple total power radiometer using matched and mismatched noise sources to noninvasively measure the temperature of human body. This radiometer operating at 3-GHz consists of an antenna collecting the noise power generated by a target, low-noise and high-gain LNAs amplifying the noise power, several band pass filters rejecting unwanted signals, and a detector converting the noise power to voltage. Single-pole-triple-throw (SP3T) switch is placed between the antenna and the receiver. Personal computer is used to control the SP3T switch, collect and process the data such as detector output voltages and physical temperatures of the reference noise sources and the target. The fabricated radiometer shows a good performance agreement with a thermometer in the temperature measurement of water from 25.0 to 43.1 °C. For the accurate prediction of the target temperature, the radiometer is calibrated adaptively to the environment and radiometer variations. For this purpose, two (hot and cold) reference noise sources are proposed using matched and mismatched resistors at room temperature. These resistor-based noise sources offer a reliable performance without complex temperature control systems. Furthermore, they can be easily calibrated in real time by periodically measuring the physical temperatures of the resistors. In addition, the logarithmic detector with wide dynamic range is adopted and logarithmically-fitted based on the measurement results instead of linear approximation, which reduces the error caused by the limited dynamic range of resistor-based noise sources. In order to further increase the accuracy, the performance imbalances between ports in SP3T switch are also taken into account by employing offsets in the radiometer output voltages.
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