[1] 郭铌.2003.植被指数及其研究进展[J].干旱气象,21(4):71-75.
[2] 高志强,刘纪远.2000.基于遥感和GIS的中国植被指数变化的驱动因子分析及模型研究[J].气候与环境研究,5(2):155-164.
[3] 赵士洞,罗天祥.1998.区域尺度陆地生态系统生物生产力研究方法[J].资源科学,20(1):23-34.
[4] Gamon J A, Penuelas J and Field C B. 1992. A narrow-wave-band spectral index that tracks diurnal changes in photosyn-thetic efficiency[J], Remote Sens.Environ, 41:35-44.
[5] 田庆久,闵祥军.1998.植被指数研究进展[J].地球科学进展,13(4):327-333.
[6] 陈云浩,李晓兵,李京,等.2004.面向航空遥感应用的可调节植被指数研究[J].中国矿业大学学报,33(4):438-442.
[7] 周廷刚,郭达志,陶康华.2003.NCIVI及其在城市绿化航空遥感调查中的应用-以宁波市为例[J].城市环境与城市生态,16(1):25-27.
[8] Jordan C F. 1969. Derivation of leaf area index from quality of light on the foresr floor[J]. Ecology, 50:663-666.
[9] Kauth R J, Thomas G S. 1976. The tasseled cap-a graphic description of the spectral-temporal development of agriculture crops as seen by Landsat[A]. Pros Symposium on Machine Processing of Remotely Sensed Data[C].Purdure University, West Lafayette, Indiana: 41-51.
[10] Wheeler S G, and Misra P N. 1976. Linear dimensionality of landsat agricultural data with implications for classifications[A]. Pros Symposium on Machine Processing of Remotely Sensed Data[C]. West Lafayette, Indiana.Laboratory for the Applications of Remote Sensing.
[11] Jackson, R D, Slater P N, and Pinter P J. 1983.Discrimination of growth and water stress in wheat by various vegetation indices through clear and turbid atmospheres[J]. Remote Sens. Environ, 13:187-208.
[12] Huete A R. 1988. A soil-adjusted vegetation index (SAVI)[J]. Remote Sens. Environ, 25: 295-309.
[13] Elvidge C D, and Z Chen. 1995. Comparison of broad-band and narrow-band red and near-infrared vegetation indices[J].Remote Sens. Environ, 54: 38-48.
[14] Qi J A. 1994. Modified soil adjusted vegetation index[J].Remote Sens. Environ, 48: 119-126.
[15] Baret F, Guyot G, Major D J. 1989. TSAVI: A vegetation index which minimize soil brightness effects on LAI and APAR estimation[A]. Proceedings of the 12th Canadian Symposium on Remote sensing and IGARSS'89[C],Vancouver, Canada, 3:1355-1358.
[16] Major D J, Baret F, and Guyot G. 1990. A ratio vegetation index adjusted for soil brightness[J]. Int. J. Remote Sens,11: 727-740.
[17] Kaufman Y J. and Tanre D. 1992. Atmospherically resistant vegetation index (ARVI) for EOS-MODIS[J]. IEEE Trans.on Geosci. and Remote Sensin, 30(2): 261-270.
[18] 张仁华,饶农新,廖国男.1996.植被指数的抗大气影响探讨[J].植物学报,38(1):53-62
[19] Pinty B, and Verstraete M M. 1992. GEMI: A Non-Linear Index to Monitor Global Vegetation from Satellites[J].Vegetation, 101: 15-20.
[20] Rouse J W, Haas R H, Schell J A, and Deering D W. 1974.Monitoring vegetation systems in the Great Plains with ERTS[A]. Proceedings of Third Earth Resources Technology Satellite-1 Symposium[C], Greenbelt: NASA SP-351:310-317.
[21] Deering D W, Rouse J W, Haas R H, and Schell J A. 1975.Measuring forage production of grazing units from Landsat MSS data[A].Proceedings of Tenth International Symposium on Remote Sensing of Environment[C], Ann Arbor, ERIM,2: 1169-1178.
[22] Roujean J L, and Breon F M. 1995. Estimating PAR absorbed by vegetation from bidirectional reflectance measurements[J]. Remote Sens. Environ, 51: 375-384.
[23] Gitelson A, Kaufman Y J, and Merzlyak M N. 1996. Use of a green channel in remote sensing of global vegetation from EOS-MODIS[J]. Remote sens. Environ., 58(3): 289-298.
[24] Liu H Q, Huete A R. 1995. A feedback based modification of the NDVI to minimize canopy background and atmosphere noise[J]. IEEE Trans Geosci Remote Sensing,33:457-465.
[25] 唐世浩,朱启疆,王锦地.2003.三波段梯度差植被指数的理论基础及其应用[J].中国科学(D辑),33(11):1094-1102.
[26] George Alan Blackburn. 1998. Auantifying Chlorophylls and Caroteniods at Leaf and Capopy Scales: An Evaluation of Some Hyperspevtral Approaches[J]. Remote Sen.Enviroment, 66: 273-285.
[27] 杨吉龙,李家存,杨德明.2001.高光谱分辨率遥感在植被监测中的应用综述[J].世界地质,20(3):307-312.
[28] Miller J R. 1990. Quantitative characterizition of the vegetation red edge reflectance: An inverted-Gaussian reflectance model[J]. International Journal of Remote Sensing, 11 (10): 1755-1733.
[29] Demetriades-Shah T H., Steven M D, and Clark J A. 1990.High resolution derivative spectra in remote sensing. Remote Sens. Enviro, 33: 55-64.
[30] 江东,王乃斌,杨小唤,刘红辉.2001.植被指数-地面温度特征空间的生态学内涵及其应用[J].地理科学进展,20(2):146-152.
[31] 陈云浩,李晓兵,史培军,等.2003.中国北方草地与农牧交错带植被的NDVI-Ts空间的年内变化特征[J].植物学报,45(10):1139-1145.
[32] 王鹏新,龚健雅,李小文.2001.条件植被温度指数及其在干旱监测中的应用[J].武汉大学学报信息科学版,26(5):412-417.
[33] Gamon J A, Penuelas J, and Field C B. 1992. A narrow-waveband spectral index that tracks diurnal changes in photosynthetic efficiency [J]. Remote Sens. Environ, 41:35-44.
[34] Penuelas J, Filella I, and Gamon J A. 1995. Assessment of photosynthetic radiation-use efficiency with spectral reflectance[J]. New Phytol, 131: 291-296.
[35] Kim M S, Daughtry C S T, Chappelle E W and McMurtrey J E. 1994. The use of High Spectral Resolution Bands for Estimating Absorbed Photosynthetically Active Radiation (APAR) [A]. 6th Symp. On Physical Measurements and Signatures in Remote sensing[C], Val D'Isere, France:299-306. |