The application of acousto-optic signal processing technique in microwave radiometer

被引:0
|
作者
Song, NH [1 ]
Zhang, JR [1 ]
Gao, F [1 ]
机构
[1] Jilin Univ, Dept Elect Engn, Changchun 130021, Peoples R China
来源
MICROWAVE REMOTE SENSING OF THE ATMOSPHERE AND ENVIRONMENT | 1998年 / 3503卷
关键词
microwave radiometer; acousto-optic signal processing; linear array antenna; multi-channel Bragg cells;
D O I
10.1117/12.319485
中图分类号
TP7 [遥感技术];
学科分类号
081102 ; 0816 ; 081602 ; 083002 ; 1404 ;
摘要
Microwave radiometer, as one of the most useful tools in remote sensing of earth resources and environment, has been developed rapidly The recent research in this area is to concentrate how to improve spatial resolution. But the methods, which depend on increasing antenna aperture or decreasing carrier wavelength to obtain high spatial resolution, are inapplicable to aerospace engineering. The synthetic aperture technique needs the coherence effect of active microwave transmitted signal, so it cannot be used by passive radiometer. In this paper, a new approach is introduced. Firstly, the radiation of far-field target is received by two-dimensional (2-D) linear antenna array. The incident signals received by all array elements have an amount of delay among them. These coherent signals of same wave front are amplified individually and applied to piezoelectric transducers of a multi-channel Bragg cell. The electronic signals are converted into traveling acoustic waves in acousto-optic cell. The refractive index of crystal is changed proportionally to the input voltages. When collimated laser is incident upon the crystal, Bragg diffraction occurs. Fourier transform lens produces optically a two-dimensional Fourier Transform of the signals in a charge-coupled device (CCD) plane. The direction and radiation intensity of arrival signal can be obtained simultaneously. Since the radiation signal of some far field target in the antenna coverage can be detected individually, that means the spatial resolution of radiometer can be improved. Theoretical derivation will be given in detail in this paper.
引用
收藏
页码:445 / 451
页数:5
相关论文
共 50 条
  • [21] Three-dimensional acousto-optic imaging in biological tissues with parallel signal processing
    Lévêque-Fort, Sandrine
    Applied Optics, 2001, 40 (07): : 1029 - 1036
  • [22] Application of acousto-optic actuator in holographic system
    Ling, FR
    Wang, B
    ADVANCED OPTICAL STORAGE TECHNOLOGY, 2002, 4930 : 372 - 376
  • [23] Acousto-optic interaction in Raman-Nath acousto-optic diffraction
    Weng Cuncheng
    He Youwu
    EUROPEAN PHYSICAL JOURNAL D, 2019, 73 (01):
  • [24] Optimization of the acousto-optic signal detection in cylindrical geometry
    Gunadi, Sonny
    Powell, Samuel
    Elwell, Clare E.
    Leung, Terence S.
    PHOTONS PLUS ULTRASOUND: IMAGING AND SENSING 2010, 2010, 7564
  • [25] Multi-function acousto-optic signal processor
    Riza, NA
    ADVANCES IN OPTICAL INFORMATION PROCESSING VIII, 1998, 3388 : 96 - 106
  • [26] Acousto-optic diffraction with allowance for the influence of the acousto-optic cell boundaries
    Antonov, S. N.
    Vainer, A. V.
    Proklov, V. V.
    Rezvov, Yu. G.
    TECHNICAL PHYSICS, 2012, 57 (06) : 814 - 818
  • [27] Acousto-optic signal generation with a nanosecond pulsed laser
    Resink, S. G.
    Hondebrink, E.
    Steenbergen, W.
    PHOTONS PLUS ULTRASOUND: IMAGING AND SENSING 2014, 2014, 8943
  • [28] Nonreciprocity of acousto-optic interaction in collinear tunable acousto-optic filters
    Dobrolenskiy, Yury S.
    Voloshinov, Vitaly B.
    Zyuryukin, Yury A.
    Djakonov, Evgeny A.
    APPLIED OPTICS, 2009, 48 (07) : C67 - C73
  • [29] Acousto-optic diffraction with allowance for the influence of the acousto-optic cell boundaries
    S. N. Antonov
    A. V. Vainer
    V. V. Proklov
    Yu. G. Rezvov
    Technical Physics, 2012, 57 : 814 - 818
  • [30] THE DATA PROCESSING TECHNIQUE FOR INTEGRATED-OPTICS ACOUSTO-OPTIC RF SPECTRUM ANALYZER
    金圣经
    朴燕
    王瑞光
    JournalofElectronics(China), 1993, (03) : 267 - 272