Zhang, Qingyuan

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  1. Zhang Q, Cheng Y, Lyapustin A, Wang Y, Zhang X, Suyker A, Verma S, Shuai Y, Middleton E. ESTIMATION OF CROP GROSS PRIMARY PRODUCTION (GPP): II. DO SCALED \{MODIS\} VEGETATION INDICES IMPROVE PERFORMANCE?. Agricultural and Forest Meteorology. 2015;200 1-8.
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  2. Zhang Q, Cheng Y, Lyapustin A, Wang Y, Gao F, Suyker A, Verma S, Middleton E. ESTIMATION OF CROP GROSS PRIMARY PRODUCTION (GPP): FAPARCHL VERSUS MOD15A2 FPAR. Remote Sensing of Environment. 2014;153 1-6.
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  3. Zhang Q, Cheng Y, Lyapustin A, Wang Y, Xiao X, Suyker A, Verma S, Tan B, Middleton E. ESTIMATION OF CROP GROSS PRIMARY PRODUCTION (GPP): I. IMPACT OF MODIS OBSERVATION FOOTPRINT AND IMPACT OF VEGETATION BRDF CHARACTERISTICS. Agricultural and Forest Meteorology. 2014;191 51-63.
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  4. Cheng Y, Zhang Q, Lyapustin A, Wang Y, Middleton E. IMPACTS OF LIGHT USE EFFICIENCY AND FPAR PARAMETERIZATION ON GROSS PRIMARY PRODUCTION MODELING. Agricultural and Forest Meteorology. 2014;189-190 187-197.
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  5. Kirtman B, Min D, Infanti J, Kinter J, Paolino D, Zhang Q, van den Dool H, Saha S, Mendez M, Becker E, Peng P, Tripp P, Huang J, DeWitt D, Tippett M, Barnston A, Li S, Rosati A, Schubert S, Rienecker M, Suarez M, Li Z, Marshak J, Lim Y, Tribbia J, Pegion K, Merryfield W, Denis B, Wood E. THE NORTH AMERICAN MULTIMODEL ENSEMBLE PHASE-1 SEASONAL-TO-INTERANNUAL PREDICTION; PHASE-2 TOWARD DEVELOPING INTRASEASONAL PREDICTION. Bull. Amer. Meteorol. Soc. 2014;95 (4):585-601.
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  6. Cheng Y, Middleton E, Zhang Q, Huemmrich K, Campbell P, Corp L, Cook B, Kustas W, Daughtry C. INTEGRATING SOLAR INDUCED FLUORESCENCE AND THE PHOTOCHEMICAL REFLECTANCE INDEX FOR ESTIMATING GROSS PRIMARY PRODUCTION IN A CORNFIELD. Remote Sens. 2013;5 (12):6857-6879.
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  7. Zhang Q, Middleton E, Cheng Y, Landis D. VARIATIONS OF FOLIAGE CHLOROPHYLL FAPAR AND FOLIAGE NON-CHLOROPHYLL FAPAR (FAPAR(CHL), FAPAR(NON-CHL)) AT THE HARVARD FOREST. IEEE J. Sel. Top. Appl. Earth Observ. Remote Sens. 2013;6 (5 SI):2254-2264.
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  8. Middleton E, Cheng Y, Corp L, Campbell P, Huemmrich K, Zhang Q, Kustas W. CANOPY LEVEL CHLOROPHYLL FLUORESCENCE AND THE PRI IN A CORNFIELD. In: Geoscience and Remote Sensing Symposium (IGARSS), 2012 IEEE International. Geoscience and Remote Sensing Symposium (IGARSS), 2012 IEEE International; JULY 2012; 2012. p. 7117-7120.
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  9. Zhang Q, Middleton E, Gao B, Cheng Y. USING EO-1 HYPERION TO SIMULATE HYSPIRI PRODUCTS FOR A CONIFEROUS FOREST: THE FRACTION OF PAR ABSORBED BY CHLOROPHYLL (FAPAR(CHL)) AND LEAF WATER CONTENT (LWC). IEEE Trans. Geosci. Remote Sensing. 2012;50 (5):1844-1852.
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  10. Cheng Y, Middleton E, Zhang Q, Ungar S, Campbell P. APPLICATIONS USING EO-1 HYPERION AT-SENSOR AND SURFACE REFLECTANCE: COMPARISONS AND CASE STUDIES. In: Geoscience and Remote Sensing Symposium (IGARSS), 2010 IEEE International. Geoscience and Remote Sensing Symposium (IGARSS), 2010 IEEE International; 25-30 July 2010; Honolulu, HI. 2010. p. 2248-2251.
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  11. Middleton E, Campbell P, Ungar S, Ong L, Zhang Q, Huemmrich K, Mandl D, Frye S. USING EO-1 HYPERION IMAGES TO PROTOTYPE ENVIRONMENTAL PRODUCTS FOR HYSPIRI. In: 2010 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE SENSING SYMPOSIUM. IEEE International Geoscience and Remote Sensing Symposium; JUN 25-30, 2010; Honolulu, HI. 2010. p. 4256-4259.
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  12. Cheng Y, Middleton E, Huemmrich K, Zhang Q, Campbell P, Corp L, Russ A, Kustas W. UTILIZING IN SITU DIRECTIONAL HYPERSPECTRAL MEASUREMENTS TO VALIDATE BIO-INDICATOR SIMULATIONS FOR A CORN CROP CANOPY. Ecological Informatics. 2010;5 (5):330-338.
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  13. Zhang Q, Middleton E, Margolis H, Drolet G, Barr A, Black T. CAN A SATELLITE-DERIVED ESTIMATE OF THE FRACTION OF PAR ABSORBED BY CHLOROPHYLL (FAPAR(CHL)) IMPROVE PREDICTIONS OF LIGHT-USE EFFICIENCY AND ECOSYSTEM PHOTOSYNTHESIS FOR A BOREAL ASPEN FOREST?. Remote Sens. Environ. 2009;113 (4):880-888.
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  14. Kumar A, Jha B, Zhang Q, Bounoua L. NEW METHODOLOGY FOR ESTIMATING THE UNPREDICTABLE COMPONENT OF SEASONAL ATMOSPHERIC VARIABILITY. J. Clim. 2007;20 (15):3888-3901.
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