Millimeter- and Submillimeter-Wave Differential Absorption Radar

被引:0
作者
Cooper, Ken B. [1 ]
Roy, Richard J. [1 ]
Siles, Jose [1 ]
Lebsock, Matthew [1 ]
Millan, Luis [1 ]
Rodriguez-Monje, Raquel [1 ]
Dengler, Robert [1 ]
Pradhan, Omkar [1 ]
Tamppari, Leslie [1 ]
Drouin, Brian [1 ]
机构
[1] CALTECH, Jet Prop Lab, Pasadena, CA 91125 USA
来源
EURAD 2020 THE 17TH EUROPEAN RADAR CONFERENCE | 2021年
基金
美国国家航空航天局;
关键词
Millimeter-wave radar; Submillimeter wave measurements; Spectroscopy; WATER-VAPOR; LIDAR;
D O I
10.1109/EuRAD48048.2021.00102
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The Jet Propulsion Laboratory is developing two experimental Differential Absorption Radar (DAR) platforms for remote sensing of water vapor on both Earth and planetary bodies. These are VIPR (Vapor Inside-cloud Profiling Radar), which operates near the 183 GHz water absorption resonance, and WASSR (WAter Sounding Short-range Radar), tuned to the 557 GHz water line. Here we contrast the system architecture for the two experimental instruments and present preliminary results of VIPR's recent airborne deployment.
引用
收藏
页码:374 / 377
页数:4
相关论文
共 50 条
  • [21] Correlation analysis of wideband electromagnetic radiation in millimeter and submillimeter wave bands
    Larkin, S
    Anischenko, S
    Chaikovsky, V
    INTERNATIONAL JOURNAL OF INFRARED AND MILLIMETER WAVES, 1998, 19 (05): : 749 - 754
  • [22] Superconducting On-Chip Spectrometery for Millimeter-submillimeter Wave Astronomy
    Endo, Akira
    IEICE TRANSACTIONS ON ELECTRONICS, 2015, E98C (03): : 219 - 226
  • [23] Correlation Analysis of Wideband Electromagnetic Radiation in Millimeter and Submillimeter Wave Bands
    S. Larkin
    S. Anischenko
    V. Chaikovsky
    International Journal of Infrared and Millimeter Waves, 1998, 19 : 749 - 754
  • [24] RESONANCE METHOD FOR STUDYING DIELECTRIC LIQUIDS IN THE MILLIMETER AND SUBMILLIMETER WAVE RANGES
    Parshin, V. V.
    Serov, E. A.
    RADIOPHYSICS AND QUANTUM ELECTRONICS, 2012, 54 (8-9) : 632 - 637
  • [25] Millimeter and submillimeter wave spectra of mono-13C-acetaldehydes
    Margules, L.
    Motiyenko, R. A.
    Ilyushin, V. V.
    Guillemin, J. C.
    ASTRONOMY & ASTROPHYSICS, 2015, 579
  • [26] Submillimeter-Wave Permittivity Measurements of Bound Water in Collagen Hydrogels via Frequency Domain Spectroscopy
    Tamminen, Aleksi
    Baggio, Mariangela
    Nefedova, Irina
    Sun, Qiushuo
    Anttila, Juha
    Ala-Laurinaho, Juha
    Brown, Elliot R.
    Wallace, Vincent P.
    Pickwell-MacPherson, Emma
    Maloney, Thaddeus
    Salkola, Mika
    Deng, Sophie X.
    Taylor, Zachary D.
    IEEE TRANSACTIONS ON TERAHERTZ SCIENCE AND TECHNOLOGY, 2021, 11 (05) : 538 - 547
  • [27] The submillimeter-wave spectrum of the chloromethyl radical, CH2Cl, in the ground vibronic state
    Bailleux, S
    Dréan, P
    Zelinger, Z
    Godon, M
    JOURNAL OF MOLECULAR SPECTROSCOPY, 2005, 229 (01) : 140 - 144
  • [28] The millimeter and submillimeter wave spectrum of cis-methyl vinyl ether
    Daly, A. M.
    Kolesnikova, L.
    Mata, S.
    Alonso, J. L.
    JOURNAL OF MOLECULAR SPECTROSCOPY, 2014, 306 : 11 - 18
  • [29] Obstacle detection and tracking method based on millimeter wave radar and LiDAR
    Niu G.
    Tian Y.
    Xiong Y.
    Beijing Hangkong Hangtian Daxue Xuebao/Journal of Beijing University of Aeronautics and Astronautics, 2024, 50 (05): : 1481 - 1490
  • [30] Photoinduced submillimeter-wave amplitude diffraction grating in a semiconducting CdF2:Ga crystal
    A. I. Ritus
    A. A. Volkov
    Journal of Experimental and Theoretical Physics, 2005, 100 : 1153 - 1158