원문정보
초록
영어
Recently, development of a cryogenic fluids storage tank for storing or transporting liquid hydrogen is actively in progress. In cryogenic fluids storage tanks, hydrogen evaporates due to the extreme temperature difference inside and outside the tank. As the mass of the cryogenic fluids changes with continuous vaporization, the fluids level also changes. Therefore, there is need for a method of accurately measuring the level change in the storage tank. In the case of general cryogenic fluids, it is difficult to accurately measure the level because the dielectric constant is very low. As a method of measuring cryogenic fluids level with low dielectric constant, it can be used an Millimeter wave (MM wave) FMCW radar sensor. However, the signal sensitivity is very weak and the level accuracy is poor. In this paper, the signal sensitivity is improved by designing the horn lens antenna of the existing 80 GHz FMCW radar sensor. Horn lens antenna is fabricated by FDM/SLA type 3D printer according to horn and lens characteristics. The horn is used to increase the signal gain and the lens improves the signal straightness. This makes it possible to measure the level of cryogenic fluids with a low dielectric constant.
목차
1. 서론
2. 80 GHz FMCW 레이더 센서
2.1 마이크로스트립 패치 배열 안테나
2.2 주파수 변조 연속파(FMCW) 원리
3. 3D 프린팅 혼/렌즈 안테나 설계
3.2 유전체 렌즈 설계
4. Horn lens antenna 성능평가
4.1 기존의 Radar 수위 측정 테스트
4.2 혼이 포함된 Radar 수위 측정 체스트
4.3 혼 렌즈가 포함된 Radar 수위 측정 테스트
5. 결론
ACKNOWLEDGMENT
REFERENCES
