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星載微波輻射計(jì)周期定標(biāo)技術(shù)的綜述

呂穎 張祖蔭 郭偉 漆蘭芬

呂穎, 張祖蔭, 郭偉, 漆蘭芬. 星載微波輻射計(jì)周期定標(biāo)技術(shù)的綜述[J]. 電子與信息學(xué)報(bào), 1997, 19(5): 695-700.
引用本文: 呂穎, 張祖蔭, 郭偉, 漆蘭芬. 星載微波輻射計(jì)周期定標(biāo)技術(shù)的綜述[J]. 電子與信息學(xué)報(bào), 1997, 19(5): 695-700.
Lu Ying, Zhang Zuyin, Guo Wei, Qi Lanfen. PERIODIC CALIBRATION OF SPACEBORNE MICROWAVE RADIOMETER-A REVIEW[J]. Journal of Electronics & Information Technology, 1997, 19(5): 695-700.
Citation: Lu Ying, Zhang Zuyin, Guo Wei, Qi Lanfen. PERIODIC CALIBRATION OF SPACEBORNE MICROWAVE RADIOMETER-A REVIEW[J]. Journal of Electronics & Information Technology, 1997, 19(5): 695-700.

星載微波輻射計(jì)周期定標(biāo)技術(shù)的綜述

PERIODIC CALIBRATION OF SPACEBORNE MICROWAVE RADIOMETER-A REVIEW

  • 摘要: 本文從周期定標(biāo)方式、定標(biāo)方程和定標(biāo)誤差分析等幾個(gè)方面全面系統(tǒng)地闡述了星載微波輻射計(jì)周期定標(biāo)技術(shù),介紹了國(guó)外的最新動(dòng)態(tài).這對(duì)我們?cè)O(shè)計(jì)自己的星載輻射計(jì)周期定標(biāo)系統(tǒng)是大有俾益的.
  • Njoku E G, Stacey J M, Barath F T. The seasat Scanning Multichannel Microwave Radiometer[2](SMMR): Instrument description and performance. IEEE J. of Oceanic Eng., 1980, OE-2(2): 100-115.[3]Arai K. Results from marine observation satellite-1 (MOS-1) operation. IEEE Trans. on GRS, 1990, GRS-28 ( 4 ) : 760-763.[4]Bernard R, et al. The microwave radiometer aboard ERS-1: Part 1-Characteristics and performantes. IEEE Trans. on GRS, 1993, GRS-31(6): 1186-1198.[5]Ruf G S, Keihm S J, Jassen M A. TOPEX/Poseidon Microwave Radiometer (TMR): I. Instrument[6]description and antenna temperature calibration. IEEE Trans. on GRS, 1995, GRS-33(1): 125-137.[7]徐培源.微波毫米波輻射計(jì)兩項(xiàng)新技術(shù).上海市電子學(xué)會(huì)1991年學(xué)術(shù)年會(huì),上海:1991, 1-4.[8]羅忠成.全功率輻射計(jì)周期定標(biāo)技術(shù)及數(shù)據(jù)處理系統(tǒng):[碩士論文].華中理工大學(xué)電信系,1991.[9]Hollinger J P, Peirce J L, Poe G A. SSM/I instrument evaluation. IEEE Trans. on GRS, 1990, GRS-28(5): 781-790.[10]Menard Y.[J].Reynolds M. The Design of the ESA Multiband Imaging Microwave Radiometer(MIMR). Proc. IGARSS9.1991,:-[11]Le Vine D M, et al. A multifrequency microwave radiometer of the future. IEEE Trans. on GRS, 1989, GRS-27(2); 193-198.[12]Dixon P F. Microwave absorbers: Theory, design and test. Microwave J., 1993, 36(11): 88-94.[13]Hardy W N. Precision temperature reference for microwave radiometry. IEEE Trans. on MTT, 1973, MTT-21(2): 149-150.[14]Goldsmith P F, Kot R A, Iwasaki R S. Microwave radiometer blackbody calibration standard for use at millimeter wavelengths[J].Rev. Sci. Instru.1979, 50(9):1120-1122[15]Banfield L J. Proposed design of the temperature control system for the variable temperature cali-bration target for the advanced microwave sounding unit B. Proc. IGARSS88, Edinburgh, Scotland, 1988,21-22.[16]Swanson P N, Riley A L. The seasat scanning multichannel microwave radiometer (SMMR): Radiometric calibration algorithm development and performance. IEEE J. of Oceanic Eng, 1980, OE-5(2): 116-124.[17]Wentz F J. Measurement of oceanic wind vector using satellite microwave radiometers. IEEE Trans. on GRS, 1992, GRS-30(5): 960-972.[18]林士杰.星載微波輻射計(jì)周期定標(biāo)技術(shù)的改進(jìn).華中理工大學(xué)微波技術(shù)教研室內(nèi)部報(bào)告,1995.[19]Ulaby F T, Moore F T, Fung A K. Microwave Remote Sensing: Active and Passive, Volume 1: Microwave Remote Sensing Fundamentals and Radiometry. Reading, MA: Addison-Wesley, 1981, 78-87.[20]Bucci O M, Franceschetti G. Scattering from wedged-tapered absorbers. IEEE Trans. on AP, 1971, AP-19(1): 96-104.[21]Janaswamy R. Oblique scattering from lossy periodic surfaces with application to unechoic chamber[22]absorbers. IEEE Trans. on AP, 1992, AP-40(2): 162-169.[23]Peckham G E. An optimum calibration procedure for radiometers[J].Int. J. of Remote Sensing.1989, 10(1):227-236
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出版歷程
  • 收稿日期:  1996-06-13
  • 修回日期:  1996-12-03
  • 刊出日期:  1997-09-19

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