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被动微波遥感数据反演地表温度研究进展

DOI: 10.11820/dlkxjz.2006.03.012, PP. 96-105

Keywords: 被动微波遥感,地表温度,辐射传输模型

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Abstract:

被动微波遥感具有穿透云层(甚至雨区)获取地表辐射信息的能力,在处理云的问题上,明显优于可见光、红外遥感,可更好地服务于相关领域研究。由于微波信号受多种因素的影响,目前被动微波反演地表温度的算法还不成熟。根据建模手段和方法的不同,从经验反演模型和物理反演模型两方面入手,系统回顾国内外被动微波数据反演地表温度的算法并加以评述,指出今后应加强尺度转换、物理机理以及多数据源结合方面的研究。

References

[1]  Kahle A B, Madura D P, and Soha J M. Middle infrared multispectral aircraft axanner data: Analysis for geological applications. Applied Optics, 1980, 19(14): 2279~2290.
[2]  Gillespie A R, Matsunaga T, Rokugawa S, Hook S J. Temperature and emissivity separation from Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) images. IEEE Transactions on Geoscience and Remote Sensing, 1998, 36(4), 1113~1126.
[3]  徐希孺, 柳钦火, 陈家宜. 遥感陆面温度. 北京大学学报(自然科学版), 1998, 34(2- 3): 248~253.
[4]  刘志武, 党安荣, 雷志栋, 黄聿刚. 利用ASTER 遥感数据反演陆面温度的算法及应用研究. 地理科学进展, 2003, 22 (5): 507~514.
[5]  Gloersen P, Barath F T. A Scanning Multichannel Microwave Radiometer for Nimbus- G and SeaSat- A. IEEE Journal of Oceanic Engineering, 1977, 2: 172~178.
[6]  Hollinger J P, Peirce J L, and Poe G A. SSM/I instrument evaluation. IEEE Transactions on Geoscience and Remote Sensing, 1990, 28: 781~790.
[7]  Kawanishi T, et al. The Advanced Microwave Scanning Radiometer for the Earth Observing System (AMSR- E), NASDA's contribution to the EOS for global energy and water cycle studies. IEEE Transactions on Geoscience and Remote Sensing, 2003, 41(2): 184~194.
[8]  Neale C M U, McFarland M J, and Chang K. Land surface- type classification using microwave brightness temperatures from the Special Sensor Microwave/Imager. IEEE Transactions on Geoscience and Remote Sensing, 1990. 28(5): 829~838.
[9]  Njoku E G. Surface Temperature estimation over land using satellite microwave radiometry. In: Choudhury B J, Kerr Y H, Njoku E G, Pampaloni P, eds. Passive microwave remote sensing of land atmosphere interactions. Utrecht: VSP, 1995, 509~530.
[10]  Kerr Y H and Njoku E G. A semiempirical model for interpreting microwave emission from semiarid land surfaces as seen from space. IEEE Transactions on Geoscience and Remote Sensing, 1990, 28: 384~393.
[11]  Mo T, Choudhury B J, Schmugge T J, Wang J R, and Jackson T J. A model for microwave emission from vegetation covered fields. Journal of Geophysical Research, 1982, 87: 11229~11237.
[12]  Pulliainen J T, Grandell J, Hallikainen M T. Hut snow emission model and its applicability to snow water equivalent retrieval. IEEE Transactions on Geoscience and Remote Sensing, 1999, 37: 1378~1390.
[13]  Njoku E G, Li L. Retrieval of land surface parameters using passive microwave measurements at 6- 18 GHz. IEEE Transactions on Geoscience and Remote Sensing, 1999, 37(1): 79~93.
[14]  Wang J R, Choudhury B J. Remote sensing of soil moisture content over bare fields at 1.4 GHz frequency. Journal of Geophysical Research, 1981, 86: 5277~5282.
[15]  Njoku E G. AMSR Land surface parameters, algorithm theoretical basis document version 3.0. Pasadena: Jet Propulsion Laboratory, 1999.
[16]  Xiang X, Smith E A. Feasibility of simultaneous surface temperature- emissivity retrieval using SSM/I measurements from HAPEX- Sahel. Journal of Hydrology, 1997, 188~189: 330~360.
[17]  Vapnik V. The nature of statistical learning theory. New York: Springer- Verlag, 1997.
[18]  Aires F, Prigent C, Rossow W B, and Rothstein M. A new neural network approach including first- guess for retrieval of atmospheric water vapor, cloud liquid water path, surface temperature and emissivities over land from satellite microwave observations. Journal of Geophysical Research, 2001, 106(D14): 14,887~14,907.
[19]  Price J C. Land surface temperature measurements form the split windows channel of NOAA 7 advanced very high resolution radiometer. Journal of Geophysical Research, 1984, 89(D5): 7231~7237.
[20]  陈良富, 徐希孺, 张仁华. 地表温度遥感反演的现状与发展趋势. 地理科学进展, 1998, 17(增刊): 208~215.
[21]  McFarland MJ, Miller R L, and Neale C MU. Land surface temperature derived from the SSM/I passive microwave brightness temperatures. IEEE Transactions on Geoscience and Remote Sensing, 1990, 28(5): 839~845.
[22]  Holinger J. DMSP Special Sensor Microwave/Imager calibration/validation, final report, Vol. II. Washington: Naval Research Laboratory, 1991.
[23]  潘广东, 王超, 田国良. SSM/I 微波辐射计数据陆面温度反演. 遥感学报, 2001, 5(4): 254~258.
[24]  Gao F, Wang J, and Ma Y. Retrieval of land surface temperatures on the Tibetan Plateau using passive microwave data. Proceedings of the International Geoscience and Remote Sensing Symposium (IGARSS), 2003, 5: 3145~3147.
[25]  李万彪, 朱元竞, 洪刚, 赵柏林. SSM/I 遥感中国东部地面温度. 自然科学进展, 1998, 8(3): 305~313.
[26]  Li Z L, Becker F. Feasibility of land surface temperature and emissivity determination from AVHRR data. Remote Sensing of Environment, 1993, 43: 67~85.
[27]  Becker F, Li Z L. Surface temperature and and emissivity at various scales: Definition, measurement and related problem. Remote Sensing Reviews, 1995, 12: 225~253.
[28]  Basist A, Grody N C, Peterson T C, Williams C N. Using the Special Sensor Microwave / Imager to monitor land surface temperature, wetness, and snow cover. Journal of Applied Meteorology, 1998, 37: 888~911.
[29]  Fily M, Royer A, Goita K, Prigent C. A simple retrieval method for land surface temperature and fraction of water surface determination from satellite microwave brightness temperatures in sub- arctic areas. Remote Sensing of Environment, 2003, 85: 328~338.
[30]  Pulliainen J T, Grandell J, Hallikainen M T. Retrieval of surface temperature in boreal forest zone from SSM/I data. IEEE Transactions on Geoscience and Remote Sensing, 1997, 35(5): 1188~1200.
[31]  Weng F, Grody N C. Physical retrieval of land surface temperature using the Special Sensor Microwave Imager. Journal of Geophysical Research, 1998, 103(D8): 8839~8848.
[32]  Zurk L M, Davis D, Njoku E G, Tsang L, Hwang J- N. Inversion of parameters for semiarid regions by a neural network. Proceedings of the International Geoscience and Remote Sensing Symposium (IGARSS), 1992, 2: 1075~1077.

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