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1. Mao Kebiao, et al., Instrument and method for monitoring the soil moisture change by using GPS ground reflection signal, Patent number: 2021105440, 2021.

2. Mao Kebiao, et al., Soil moisture inversion method based on deep learning, Patent number: 2021105982.(»ùÓÚÉî¶ÈѧϰµÄÍÁÈÀË®·Ö·´ÑÝËã·¨)

3. Mao Kebiao, et al., A High Spatial-Temporal Resolution Method for Near-Surface Air Temperature Reconstruction, Patent number: 2021105536, 2021.£¨¸ßʱ¿Õ·Ö±æÂÊÆøÎÂÖع¹·½·¨£©

4. Mao Kebiao, et al., Land surface temperature estimation method based on expert knowledge model data driving and machine learning, Patent number: 2021105120, 2021. (»ùÓÚÉî¶ÈѧϰµÄµØ±íζȷ´ÑÝ·½·¨)

5. Mao Kebiao, et al., Method for Simultaneously Retrieving Surface Temperature and Emissivity from Remote Sensing Data Based on Deep Learning, Patent number: 2021105287. (ÀûÓûúÆ÷ѧϰͬʱ·´ÑݵرíζȺͷ¢ÉäÂÊ·½·¨)

6. Mao Kebiao, et al., Method of Retrieving Surface Temperature from Passive Microwave Remote Sensing Data AMSR-E, Patent number: 2021105233.

7. Mao Kebiao, et al., Method for Reconstructing global Surface Temperature, Patent number: 2021105817, 2021.£¨È«Çò±íÃæζÈÖع¹·½·¨£©

8. Mao Kebiao, et al., Risk Assessment Method of Winter Wheat and Summer Maize Disaster, Patent number: 2021105767.£¨¶¬Ð¡ÂóºÍÏÄÓñÃ×·çÏÕÆÀ¹À·½·¨£©

9. Mao Kebiao, et al., Method for Retrieving Land Surface Temperature from FY-3D/MERSI-2 Data, Patent number: 2021105579, 2021.(FY-3DµØ±íζȷ´ÑÝËã·¨)

10. Mao Kebiao, et al., A Simultaneous Inversion Method of Soil Moisture and Surface Temperature Based on Model-Data Driven and Deep Learning, Patent number: 2021105771. (»ùÓÚÉî¶Èѧϰͬʱ·´ÑݵرíζȺÍÍÁÈÀË®·ÖµÄ·´ÑÝ·½·¨)

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1. Fang Shu, Mao Kebiao*#£¨Ã«¿Ë±ë£©, Xia Xueqi, Wang Ping, Shi Jiancheng, M. Bateni,Sayed, Xu Tongren, Cao,Mengmeng, & Heggy,Essam (2021). A Daily near-surface Air Temperature Dataset for China from 1979-2018 (Version 1.0) [Data set]. Zenodo. https://doi.org/10.5281/zenodo.5502275 . (ÖйúÆøÎÂÊý¾Ý¼¯£¬ÒÑÏÂÔس¬¹ý64240´Î)

2. Bing Zhao, Kebiao Mao*#£¨Ã«¿Ë±ë£©, YuLin Cai, Jiancheng Shi, Zhaoliang Li, Zhihao Qin, & Xiangjin Meng. (2019). A combined Terra and Aqua MODIS land surface temperature and meteorological station data product for China from 2003¨C2017 (version 1.1) [Data set]. Zenodo. https://doi.org/10.5281/zenodo.3528024 .£¨Â½ÃæζÈÊý¾Ý¼¯£¬ÒÑÏÂÔس¬¹ý6530´Î£©

3. Mengmeng cao, Kebiao Mao*#£¨Ã«¿Ë±ë£©, Yibo Yan, Jiancheng Shi, Han Wang, Tongren Xu, Shu Fang, & Zijin Yuan. (2021). A New Global Gridded Sea Surface Temperature Data Product Based on Multisource Data (1.0) [Data set]. Zenodo. https://doi.org/10.5281/zenodo.4419804 . £¨È«Çòº£ÃæζÈÊý¾Ý¼¯£¬ÒÑÏÂÔس¬¹ý5970´Î£©

4. Xiangjin Meng, Kebiao Mao*#£¨Ã«¿Ë±ë£©, Fei Meng, Jiancheng Shi, Jiangyuan Zeng, Xinyi Shen, Yaokui Cui, Lingmei Jiang, & Zhonghua Guo. (2021). A fine-resolution soil moisture dataset for China in 2002~2018 (3.0) [Data set]. Zenodo. https://doi.org/10.5281/zenodo.4738556 . £¨ÖйúÍÁÈÀË®·ÖÊý¾Ý¼¯£¬ÒÑÏÂÔس¬¹ý4660´Î£©

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1. ë¿Ë±ë,»ùÓÚÈȺìÍâºÍ΢²¨Êý¾ÝµÄµØ±íζȺÍÍÁÈÀË®·Ö·´ÑÝËã·¨Ñо¿, ÖйúÅ©Òµ¿Æѧ¼¼Êõ³ö°æÉç, 2007.12(רÖø). ISBN:9787802334687.

2. ë¿Ë±ë£¬Å©ÒµÆøÏóÒ£¸Ð¹Ø¼ü²ÎÊý·´ÑÝËã·¨¼°Ó¦ÓÃÑо¿£¬ÖйúÅ©Òµ¿Æѧ¼¼Êõ³ö°æÉç, 2017.10(רÖø). ISBN: 9787511632685.

3. Ping Wang, Kebiao Mao#*, Fei Meng, Zhihao Qin, Shu Fang, Sayed M. Bateni, A daily highest air temperature estimation method and spatial¨Ctemporal changes analysis of high temperature in China from 1979 to 2018, Geosci. Model Dev., 2022, 15, 6059¨C6083.

4. J. Guo, Kebiao Mao#*, Z.J. Yuan, Z Qin, T. Xu, S.M. Bateni, Y. Zhao, C. Ye, Global Food Security Assessment during 1961¨C2019.Sustainability 2021, 132, 1-18.

5. Z. Yuan, N. NourEldeen, Kebiao. Mao#*, Z. Qin, T. Xu, Spatiotemporal Change Analysis of Soil Moisture Based on Downscaling Technology in Africa. Water 2022, 14, 1-21.

6. Fang, S., Kebiao Mao#*, Xia, X., Wang, P., Shi, J., Bateni, S. M., Xu, T., Cao, M., and Heggy, E. Qin. Z., Dataset of daily near-surface air temperature in China from 1979 to 2018, Earth Syst. Sci. Data. 2022, 14, 1413¨C1432. https://essd.copernicus.org/articles/14/1413/2022/

7. Wang, H, Kebiao Mao#*, Yuan Zijin, Shi, J, Cao, M., Qin, Z., Duan, S., Tang, B., A method for land surface temperature retrieval based on model-data-knowledge-driven and deep learning, Remote Sensing of Environment, 2021, 265, 1-19.

8. Meng, X., Kebiao Mao#*, Meng, F., Shi, J., Zeng, J., Shen, X., Cui, Y., Jiang, L., and Guo, Z.: A fine-resolution soil moisture dataset for China in 2002¨C2018, Earth Syst. Sci. Data, 2021, 13, 3239¨C3261. https://doi.org/10.5194/essd-13-3239-2021.

9. Yibo Yan, Kebiao Mao#*, Xinyi Shen, Mengmeng Cao, Tongren Xu, Zhonghua Guo, Qing Bao, Evaluation of the influence of ENSO on tropical vegetation in long time series using a new indicator, Ecological Indicators, 2021,129,1-22. https://doi.org/10.1016/j.ecolind.2021.107872.

10. Cao, M., Kebiao Mao#*, Yan, Y., Shi, J., Wang, H., Xu, T., Fang, S., and Yuan, Z., A new global gridded sea surface temperature data product based on multisource data, Earth Syst. Sci. Data, 2021 13, 2111¨C2134, https://doi.org/10.5194/essd-13-2111-2021, 2021.

11. Mengmeng Cao, Kebiao Mao#*, Xinyi Shen, Tongren Xu , Yibo Yan, Zijin Yuan, Monitoring the Spatial and Temporal Variations in The Water Surface and Floating Algal Bloom Areas in Dongting Lake Using a Long-Term MODIS Image Time Series, Remote Sensing, 2020, 12, 3622, 1-31, doi:10.3390/rs12213622.

12. Zhao, B., Kebiao Mao#*, Y. Cai, J. Shi, Z. Li, Z. Qin, and X. Meng, A combined Terra and Aqua MODIS land surface temperature and meteorological station data product for China from 2003 ¨C 2017, Earth Syst. Sci. Data, 2020, 12, 2555¨C2577.

13. Nusseiba Noureldeen, Kebiao Mao*, Alnail Mohmed, Zijin Yuan, Yanying Yang, Spatio-Temporal Drought Assessment over Sahelian Countries from 1985 to 2015, Journal of Meteorological Research, 2020, 34, 760-774.

14. Yan, Y.B., Kebiao Mao#*, Shi, J., Piao, S.L., Shen, X.Y., Dozier, J., Liu, Y., Ren, H.L, Bao, Q., Driving forces of land surface temperature anomalous changes in North America in 2002¨C2018, Scientific Reports, 2020, 6931(10), 1-13, https://doi.org/10.1038/s41598-020-63701-5.

15. Xinlei He, Tongren Xu, Youlong Xia, Sayed M. Bateni, Zhixia Guo, Shaomin Liu, Kebiao Mao, Yuan Zhang, Huaize Feng, Jingxue Zhao, A Bayesian Three-Cornered Hat (BTCH) Method: Improving the Terrestrial Evapotranspiration Estimation, Remote Sens. 2020, 12, 878; doi:10.3390/rs12050878.

16. Feifan Ge, Tao Yan, Lu Zhou, Yuelin Jiang, Wei Li, Yufen Fan, Yishu Wang, Kebiao Mao, Wenge Wu, Impact of sea ice decline in the Arctic Ocean on the number of extreme low-temperature days over China, Int J Climatol. 2020, 40:1421¨C1434.

17. NourEldeen, N., Kebiao Mao#*, Z. Yuan, X. Shen, T. Xu, and Z. Qin, Analysis of the spatiotemporal change in land surface temperature for a long-term sequence in Africa (2003¨C2017). Remote Sensing, 2020, 12, 488. doi: 10.3390/rs12030488.

18. Jingxue Zhao, Tongren Xu*, Jingfeng Xiao, Shaomin Liu, Kebiao Mao, Lisheng Song, Yunjun Yao, Xinlei He, Huaize Feng£¬Responses of Water Use Efficiency to Drought in Southwest China£¬Remote Sens. 2020, 12(1), 199. https://doi.org/10.3390/ rs12010199.

19. Hanwang, Kebiao Mao#*, Fengyun Mu, Jiancheng Shi, Jun Yang, Zhaoliang Li, Zhihao Qin, A Split Window Algorithm for Retrieving Land Surface Temperature from FY-3D MERSI-2 data, Remote Sensing, 2019, 11, 20183, 1-25.

20. Xiangjin Meng, Kebiao Mao#*, Fei Meng, Xinyi Shen, Tongren Xu, Mengmeng Cao, Long-term Spatiotemporal Variations in Soil Moisture in North East China Based on 1-km Resolution Downscaled Passive Microwave Soil Moisture Products, Sensors, 2019, 19, 3527, 1-18.

21. Jiancan Tan, Nusseiba NourEldeen, Kebiao Mao*, Jiancheng Shi, Zhaoliang Li, Tongren Xu£¬Zijin Yuan, Deep Learning Convolutional Neural Network for the Retrieval of Land Surface Temperature from AMSR2 Data in China, Sensors, 2019, 19, 2987:1-20; doi:10.3390/s19132987.

22. Kebiao Mao*, Zijin Yuan, Zhiyuan Zuo, Tongren Xu, Xinyi Shen, Chunyu Gao, Changes in Global Cloud Cover Based on Remote Sensing Data from 2003 to 2012, Chinese Geographical Science, 2019,29,2, 306¨C315.

23. Jingpeng Guo, Kebiao Mao*, Yinghui Zhao, Zhong Lu, and Xiaoping Lu, Impact of Climate on Food Security in Mainland China: A New Perspective Based on Characteristics of Major Agricultural Natural Disasters and Grain Loss, Sustainability, 2019, 11, 869, 1-25.

24. Tongren Xu, Xinlei He, Saye M. Bateni, Thomas Aulignec, Shaomin Liu, Ziwei Xu, Ji Zhou, Kebiao Mao, Mapping regional turbulent heat fluxes variational assimilation of land surface temperature data from polar orbiting satellites, Remote Sensing of Environment,2019,221,444-461.

25. Xinyi Shen, DachengWang, Kebiao Mao, Emmanouil Anagnostou, Yang Hong, Inundation Extent Mapping by Synthetic Aperture Radar: A Review, Remote sensing, 2019,11(879), 1-17.

26. Kebiao Mao*, Zhiyuan Zuo, Xinyi Shen, Tongren Xu, Chunyu Gao, Guang Liu, Retrieval of Land-surface Temperature from AMSR2 Data Using a Deep Dynamic Learning Neural Network, Chinese Geographical Science. 2018, 28,1, 1¨C11.

27.  Jiaqi Han, Kebiao Mao*, Tongren Xu, Jingpeng Guo, Zhiyuan Zuo, Chunyu Gao, A soil moisture estimation framework based on the CART algorithm and its application in China, Journal of Hydrology, 2018, 561, 65-75.

28.  Feifan Ge, Kebiao Mao*, Yuelin Jiang, Lei Wang, Tongren Xu, Chunyu Gao, Zhiyuan Zuo, Regional climate change after the commissioning of the Three Gorges Dam: a case study for the middle reaches of the Yangtze River, Climate research, 2018, 75, 33-51.

29. Lang Xia, Fen Zhao, Liping Chen, Ruirui Zhang, Kebiao Mao*,Arve Kylling, Ying Ma£¬Performance comparison of the MODIS and the VIIRS 1.38 ¦Ìm cirrus cloud channels using libRadtran and CALIOP data£¬Remote Sensing of Environment,2018,206,363¨C374.

30. Lang Xia, Fen Zhao, Kebiao Mao*, Zijin Yuan, Zhiyuan Zuo,Tongren Xu, SPI-Based Analyses of Drought Changes over the Past 60 Years in China¡¯s Major Crop-Growing Areas, Remote Sens. 2018, 171(10),1-15.

31. Kebiao Mao*, Ying Ma, Xuelan Tan, Xinyi Shen, Guang Liu, Zhaoliang Li, Jingming Chen, Lang Xia, Global surface temperature change analysis based on MODIS data in recent twelve years, Advance Space Research, 2017,59,503-512.

32. Kebiao Mao*, Xinyi Shen, Zhiyuan Zuo, et al., An advanced radiative transfer and neural network scheme and evaluation for estimating water vapor content from MODIS data, Atmosphere, 2017, 139(8):1-11.

33. Kebiao Mao*, Chen J M,  Y. Ma, Y. Song, X. Tan, K. Yang, Global water vapor content decreases from 2003 to 2012: an analysis based on MODIS Data, Chinese Geographical Science, 2017, 27(1), 1-7.

34. Kebiao Mao*, Zhaoliang Li, Jingming Chen, Ying Ma, Guang Liu, Xuelan Tan, Kaixin Yang, Global vegetation change analysis based on MODIS data in recent twelve years, High Technology Letters, 2016, 22(4), 343-349.

35. Xinyi Shen, Humberto J.V., Efthymios I.N., Emmanouil N.A., Yang Hong, Zeong Hao, Ke Zhang, Kebiao Mao, GDBC: A tool for generating global-scale distributed basin morphometry, Environmental Modelling & Software, 2016, 83: 212-223.

36. Kebaio Mao*, Y. Ma, T.R. Xu, Q. Liu, Han Jiaqi, L. Xia, X. Y. Shen, T. J. He. A New Perspective about Climate Change, Scientific Journal of Earth Science, 2015, 5(1): 12-17.

37. Kebiao Mao*, Y. Ma, X. Y. Shen, L. Xia, Shiying Tian, Han Jiaqi, Qing Liu, A method for retrieving soil moisture from GNSS-R by using experiment data, High Technology letters, 2015,21(2):219-223.

38. Lang Xia, F. Zhao, Y. Ma, Z. W. Sun, X. Y. Shen, Kebiao Mao*, An Improved Algorithm for the Detection of Cirrus Clouds in the Tibetan Plateau Using VIIRS and MODIS Data, Journal of Atmosphere and Oceanic Technology, 2015, 32, 2125-2129.

39. Xinyi Shen*, Hong Yang, Qiming Qin, Basara Jeffrey, Kebiao Mao, A semi-physical microwave surface emission model for soil moisture retrieval, IEEE Transaction on Geoscience and Remote Sensing, 2015, 53 (7), 4079-4090.

40. Lang Xia, Kebiao Mao*, Y. Ma, F. Zhao, L.P. Jiang, X.Y. Shen, Z. H. Qin, An algorithm for retrieving land surface temperature using VIIRS data in combination with multi-sensors, Sensors, 2014, 14, 21385-21408.

41. Kebaio Mao*, Y. Ma, L. Xia, Wendy Y. Chen, X. Y. Shen, T. J. He, Global aerosol change in the last decade: An analysis based on MODIS data, Atmospheric Environment, 2014, 94, 680-686.

42. Tongren Xu, S.M. Bateni, Shunlin Liang, Dara Entekhabi, Kebiao Mao, Estimation of Surface Turbulent Heat Fluxes via Variational Assimilation of Sequences of Land Surface Temperatures from Geostationary Operational Environmental Satellites, Journal of Geophysical Research-atmosphere, 2014, 119, 10780-10798.

43. Guang Liu, Jinghui Fan, Feng Zhao, Kebiao Mao, Changyong Dou, Monitoring elevation change of glaciers on Geladandong Mountain using TanDEM-X SAR interferometry, Journal of Mountain Science, 2017, 14(5), 859-869.

44. Kebiao Mao*, Y. Ma, X. Y. Shen, L. Xia, et al., The Study of Estimation Method of Broadband Emissivity from EOS/MODIS Data, High Technology letters, 2014, 21(1):88-91.

45. Kebiao Mao*, Y. Ma, L, Xia, X. Shen, et al., A neural network method for monitoring snowstorm: A case study in southern China. Chinese Geographical Science, 2014, 24(5):599-606.

46. Shen X., Kebiao Mao, Q. Qin, Y. Hong, Guifu Zhang, Bare surface soil moisture estimation using double-angle and dual-polarization L-band radar data, IEEE Transaction on Geoscience and Remote Sensing, 2013, 51(7):3931-3942.

47. Kebiao Mao*, Y. Ma, X. Shen, et al., Estimation of Broadband Emissivity (8-12um) from ASTER Data by Using RM-NN, Optics Express, 2012, 20(18): 20096-20101.

48. JianCheng Shi, Y. Du, J. Du, L. Jiang, L, Chai, Kebiao Mao, et al., Progresses on microwave remote sensing of land surface parameters, Science China Earth Science, 2012, 55 (7): 1052-1078.

49. Kebiao Mao*, Y. Ma, L. Xia, et al., The Monitoring Analysis for the Drought in China by Using an Improved MPI Method, Journal of Integrative Agriculture, 2012, 11(6), 1048-1058.

50. Kebiao Mao*, SanMei Li, DaoLong Wang, LiXin Zhang, Huajun Tang, Xiufeng Wang, Zhaoliang Li, Retrieval of Land Surface Temperature and Emissivity from ASTER1B data Using Dynamic Learning Neural Network, international journal of remote sensing, 2011, 32(19), 5413-5423.

51. Kebiao Mao*, H. T. Li, D. Y. Hu, J. Wang, J. X. Huang, Z. L. Li, Q. B. Zhou, and H. J. Tang, Estimation of water vapor content in near-infrared bands around 1 ¦Ìm from MODIS data by using RM¨CNN, Optics Express, 2010, 18(9), 9542¨C9554.

52. Kebiao Mao*, Huajun Tang, Xiufeng Wang, Qingbo Zhou, Daolong Wang, Near-Surface Air Temperature Estimation from ASTER Data Using Neural Network, International Journal of Remote Sensing,2008, 29(20): 6021-6028.

53. Kebiao Mao*, Jiancheng Shi, Huajun Tang, Zhao-Liang Li, Xiufeng Wang, Kunshan Chen, A Neural Network Technique for Separating Land Surface Emissivity and Temperature from ASTER Imagery, IEEE Trans. Geosci. Remote Sensing, 2008, 46(1), 200-208.

54. Kebiao Mao*, J. Shi, Z. Li, and H. Tang, An RM-NN algorithm for retrieving land surface temperature and emissivity from EOS/MODIS data, Journal of Geophysical Research-atmosphere, 2007, 112, D21102, 1-17.

55. Kebiao Mao*, Jiancheng Shi, Zhaoliang Li, Zhihao Qin, Manchun Li, Bin Xu, A physics-based statistical algorithm for retrieving land surface temperature from AMSR-E passive microwave data, Science in China (Series D)£¬2007,7:1115-1120.

56. Kebiao Mao*, Tang H. J., Zhang L. X., Li M. C., Guo Y., Zhao D. Z., A Method for Retrieving Soil Moisture in Tibet Region by Utilizing Microwave Index from TRMM/TMI Data, International Journal of Remote Sensing, 2008£¬29£¨10£©£º2905-2925.

57. Kebiao Mao*, Qin Z., Shi J., Gong P., A Practical Split-Window Algorithm for Retrieving Land Surface Temperature from MODIS Data, International Journal of Remote Sensing, 2005,26:3181-3204.

58. Huang Jianxi, Zeng Yuan, Wu Wenbin, Mao Kebiao, Xu Jingyu, Su Wei£¬Estimation of Overstory and Understory Leaf Area Index by Combining Hyperion and Panchromatic QuickBird Data Using Neural Network Method£¬Sensor Letters, 2011, 9( 3), 964-973(10).

59. Huang Jianxi, Zeng Yuan, Kuusk Andres, Wu Bingfang, Dong Lixin, Mao Kebiao, Chen Jinsong, Inverting a forest canopy reflectance model to retrieve the overstorey and understorey leaf area index for forest stands, International Journal of Remote Sensing, 2011, 32(22), 7591-7611.

60. Changhong Su, Bojie Fu, Yongping Wei, Yihe L¨¹, Guohua Liu, Daolong Wang, Kebiao Mao, Xiaoming Feng£¬Ecosystem management based on ecosystem services and human activities: a case study in the Yanhe watershed£¬Sustainability Science. 2012, 7(1). 17-32. DOI:10.1007/s11625-011-0145-1.

61.  Kebiao Mao*, Y. Ma, Z.Y. Zuo, Y. Q. Jiao, F. Wang, Q. Liu, Z. W. Sun, Global water vapor content and vegetation change analysis based on remote sensing data, International Geoscience and Remote Sensing Symposium (IGARSS16), 2016, 17, 5205-5208.

62. Jingpeng Guo, Huiqian Chen, Yinghui Zhao, Kebiao Mao*, Ning Li, Liang Zhu, A dataset of major agricultural disasters and disaster losses in China(1949-2015), China Scientific Data, 2018, 3(2), 1-7.

63. Kebiao Mao*, Y. Ma, Z.Y. Zuo, F. Wang, Y. Q. Jiao, X.Y. Shen, Q. Liu, Which year is the hottest or coldest from 2001 to 2012 based on remote sensing data, International Geoscience and Remote Sensing Symposium (IGARSS16), 2016, 16, 5213-5216.

64. kebiao Mao*, L.P. Jiang, Y. Z. Liu, D. L. Wang, H.J.Tang, Retrieval analysis of snow depth from AMSR-E data in complex weather conditions, IITA-GRS2010, V1, 177-180.

65. kebiao Mao*, C.Y.Gao, L.J.Han, W. ZHANG, H.J. Tang, The drought monitoring in China by using AMSR-E data, IITA-GRS2010, V1, 181-184.

66. Kebiao Mao*, Zhang Mengyang, Wang Jianming,Tang Huajun,Zhou Qingbo, The Study of Soil Moisture Retrieval Algorithm from GNSS-R, IITA Conference on Geoscience and Remote Sensing (IITA-GRS 2008), Shanghai, 2008,12,1-5.

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68. Kebiao Mao*, Jiancheng Shi, Huajun Tang, Ying Guo, Yubao Qiu, Liying Li, A neural ¨Cnetwork technique for retrieving land surface temperature from AMSR-E passive microwave data, International Geoscience and Remote Sensing Symposium (IGARSS07), 23-28 July 2007, 7: 4422-4425.

69. Kebiao Mao*, Zhihao Qin, Manchun Li, Lixin Zhang, Bin Xu, Lingmei Jiang, An Algorithm for Surface Soil Moisture Retrieval Using the Microwave Polarization Difference Index, International Geoscience and Remote Sensing Symposium (IGARSS06).

70. Kebiao Mao*,Jiangcheng Shi, Zhaoliang Li, Zhihao Qin, Xiufeng Wang, Lingmei Jiang, A Multiple-Band Algorithm for Separating Land Surface Emissivity and Temperature from ASTER Imagery, International Geoscience and Remote Sensing Symposium (IGARSS06).

71. Kebiao Mao*, Jiancheng Shi, Zhihao Qin, Peng Gong, Wei Liu, Lina Xu, A Multiple-band Algorithm for Retrieving Land-Surface Temperature and Emissivity from MODIS Data, International Geoscience and Remote Sensing Symposium (IGARSS05), 25-29 July 2005, 5: 3269 - 3272.

72. Kebiao Mao*£¬Jiancheng Shi £¬Zhaoliang Li£¬Zhihao Qin, Yuanyuan Jia, Land Surface Temperature and Emissivity Retrieved from the AMSR Passive Microwave Data, International Geoscience and Remote Sensing Symposium (IGARSS05), 25-29 July 2005, 4: 2247 ¨C 2249.

73. Kebiao Mao*, Zhihao Qin, Bin Xu, Manchun Li, Jianming Wang Shengli Wu, The Influence Analysis of Water Content for the Accuracy of Practical Split-window Algorithm, International Geoscience and Remote Sensing Symposium (IGARSS05), 25-29 July 2005, 5: 3266 ¨C 3268.

74. Kebiao Mao*, Jiancheng Shi, Zhihao Qin, Peng Gong, An Advanced and Optimized Split-Window Algorithm for Retrieving Land-Surface Temperature from ASTER Data, International Symposium on Physical Measurements and Signatures in Remote Sensing (ispmsrs),2005.10.

75. Kebiao Mao*, Jiancheng Shi, Zhaoliang Li, Zhihao Qin, Peng Gong, A Physics Based on Statistics Algorithm for Retrieving Land Surface Temperature and Soil Moisture From AMSR-E Passive Microwave Data, International Symposium on Physical Measurements and Signatures in Remote Sensing (ispmsrs), 2005.10.

76. Shengli Wu, Kebiao Mao, Jiangyang Du, Lina Xu, Jiangming Wang, The Potential of TRMM/PR Data to Monitor Snow in Tibetan Plateau, International Geoscience and Remote Sensing Symposium (IGARSS05), 25-29 July 2005, 5: 4431 -4434.

77. Xu Lina, Jiancheng Shi, Kebiao Mao, Estimating snow albedo in Tibetan plateau using MODIS, Proceedings of SPIE - The International Society for Optical Engineering, 2005.

78. Ying Guo, Jiancheng Shi, Kebiao Mao, Surface temperature effect on soil moisture retrieval from AMSR-E data, International Geoscience and Remote Sensing Symposium (IGARSS07), 23-28 July 2007, 7:1192 ¨C1195.

79. Ô¬×Ͻú£¬Ã«¿Ë±ë£¬²ÜÃÈÃÈ£¬Íõº­£¬·½Ê棬Íõƽ, ¹úÄÚÍâÅ©Òµ´óÊý¾Ý·¢Õ¹µÄÏÖ×´Óë´æÔÚµÄÎÊÌâ, ÖйúÅ©ÒµÐÅÏ¢,2021,33(3):1-12.

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81. ë¿Ë±ë*£¬ÌïÊÀÓ¢£¬Ô¬×Ͻú£¬Íõº­£¬Ì·Ñ©À¼£¬Ïç´åÕñÐËÕ½ÂÔÊÓÓòϼ«¶ËÆøºòÔÖº¦Óë²ØÁ¸ÓÚÃñ¼Æ»®·ÖÎöºÍÕ¹Íû£¬Å©ÒµÕ¹Íû£¬2019,8,47-51.

82. ²ÜÃÈÃÈ£¬Ã«¿Ë±ë*£¬ÑÏÒ㲩£¬´Þ¾©Â·£¬Ô¬×Ͻú£¬Nusseiba£¬»ùÓÚMODIS Êý¾ÝµÄ¶´Í¥ºþË®ÌåºÍË®»ªÊ±¿Õ±ä»¯Ñо¿£¬Öйú»·¾³¿Æѧ£¬2019, 39£¨6£©£¬2523-2531.

83. ÃÏÏé½ð£¬Ã«¿Ë±ë*£¬ÃÏ·É£¬Ê¦´ºÏ㣬ÕÔ±ù£¬Ô¬×Ͻú£¬»ùÓÚ¿Õ¼äȨÖØ·Ö½âµÄ½µ³ß¶ÈÍÁÈÀË®·Ö²úÆ·µÄÖйúÍÁÈÀË®·Öʱ¿Õ¸ñ¾ÖÑо¿£¬¸ß¼¼ÊõͨѶ£¬2019,29£¨4£©£¬402-412.

84. ë¿Ë±ë*£¬Ñî¾ü£¬º«ÐãÕ䣬ÌÆÊÀºÆ£¬Ô¬×Ͻú£¬¸ß´ºÓ꣬»ùÓÚÉî¶È¶¯Ì¬Ñ§Ï°Éñ¾­ÍøÂçºÍ·øÉä´«ÊäÄ£Ð͵رíζȷ´ÑÝËã·¨Ñо¿£¬ÖйúÅ©ÒµÐÅÏ¢£¬2018,30£¨5£©£¬47-57.

85. ÑÏÒ㲩£¬Ã«¿Ë±ë*£¬ÐíÊÀÎÀ£¬ÌïÊÀÓ¢£¬²ÜÃÈÃÈ£¬Ô¬×Ͻú£¬»ùÓÚ¹ú¼ÊóÒ×Óë×ÔÈ»ÔÖº¦±³¾°ÏµÄÖйúÅ©²úÆ·¹©ÐèƽºâÕ¹Íû£¬Å©ÒµÕ¹Íû£¬2019,6£¬76-82.

86. ÑîÑÞÓ±£¬Ã«¿Ë±ë*£¬º«ÐãÕ䣬Ñî¾ü£¬¹ù¾§Åô£¬1949-2016ÄêÖйúºµÔÖ¹æÂɼ°Æä¶ÔÁ¸Ê³²úÁ¿µÄÓ°Ï죬2018,30£¨5£©£¬76-90.

87. ÕÔ±ù£¬Ã«¿Ë±ë*£¬²ÌÓñÁÖ£¬Íõº­£¬ÃÏÏé½ð£¬Ô¬×Ͻú£¬Å©Òµ´óÊý¾Ý¹Ø¼ü¼¼Êõ¼°Ó¦ÓýøÕ¹£¬ÖйúÅ©ÒµÐÅÏ¢£¬2018,30£¨6£©£¬25-34.

88. ´Þ¾©Â·£¬Ã«¿Ë±ë*£¬³ÂÈÕÇ壬²ÜÃÈÃÈ£¬Ô¬×Ͻú£¬ÌÆÊÀºÆ£¬»ùÓڸ߷ֱæÂÊÒ£¸ÐÓ°ÏñµÄÅ©×÷ÎïÔÖËðÆÀ¹ÀÑо¿£¬2018,30£¨6£©£¬63-70.

89. °²Ôã¬Öܹú»ª£¬ºØÑÞ»ª£¬Ã«¿Ë±ë£¬Ì·Ñ©À¼£¬»ùÓÚ¡°ÈýÉú¡±ÊӽǵÄÏç´å¹¦ÄÜ·ÖÇø¼°µ÷¿Ø-ÒÔ³¤Öê̶µØÇòΪÀý£¬µØÀíÑо¿£¬2018,37£¨4£©£¬695-703.

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92. ë¿Ë±ë*£¬×óÖ¾Ô¶£¬Öì¸ß·å£¬ÌÆ»ª¿¡£¬ÕÔÓ³»Û£¬ÂíÓ¨£¬È«ÇòÆøºòºÍÉú̬ϵͳ±ä»¯ÓëÐÇÌå¹ìµÀλÖñ仯¹ØϵÑо¿£¬¸ß¼¼ÊõͨѶ£¬2016, 26£¨11£©, 890 - 899.

93. ÕÔÓ³»Û£¬¹ù¾§Åô£¬Ã«¿Ë±ë*£¬ÏîÑÇ骣¬Àîâùº¯£¬º«¼Òç÷£¬ÎâÄÙ£¬1949-2015ÄêÖйúµäÐÍ×ÔÈ»ÔÖº¦¼°Á¸Ê³ÔÖËðÌØÕ÷, µØÀíѧ±¨, 2017£¬72(7), 1261-1276.

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95. Ì·Ñ©À¼£¬ÓÚ˼Զ£¬Å·ÑôÇÉÁᣬë¿Ë±ë£¬ºØÑÞ»ª£¬Öܹú»ª£¬¿ìËÙ³ÇÊл¯ÇøÓòÅ©´å¿ÕÐÄ»¯²â¶ÈÓëÓ°ÏìÒòËØÑо¿¡ªÒÔ³¤Öê̶µØÇøΪÀý£¬µØÀíÑо¿£¬2017£¬36£¨4£©,684-694.

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98. Áõ„Í£¬Ã«¿Ë±ë*£¬ÂíÓ¨£¬º«¼Òç÷£¬ÏÄÀË£¬Å©Òµ´óÊý¾ÝdzÎö¼°ÓëWeb GIS½áºÏÓ¦Óã¬Ò£¸ÐÐÅÏ¢£¬2016£¬31£¨1£©£º124-128.

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108. ë¿Ë±ë*£¬ÂíÓ¨£¬ÏÄÀË£¬ÉòÐÄÒ»£¬ÓÃMODISÊý¾Ý·´ÑݽüµØ±í¿ÕÆøζȵÄRM-NNËã·¨£¬¸ß¼¼ÊõͨѶ£¬2013£¬23(5):462-466.

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110. ë¿Ë±ë*£¬ÍõµÀÁú£¬Àî×Ì¬ÕÅÁ¢Ð£¬ÖÜÇ岨£¬ÌÆ»ª¿¡£¬Àµ¤£¬ÀûÓÃAMSR-E±»¶¯Î¢²¨Êý¾Ý·´ÑݵرíζȵÄÉñ¾­ÍøÂçËã·¨, ¸ß¼¼ÊõͨѶ£¬2009£¬19£¨11£©£º1195-1200.

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112. ë¿Ë±ë*,ñûÖ¾ºÀ, Ê©½¨³É, ¹¬Åô, Õë¶ÔMODISÊý¾ÝµÄÅü´°Ëã·¨Ñо¿,Î人´óѧѧ±¨(ÐÅÏ¢¿Æѧ°æ)2005£¨8£©£º703-708.

113. ë¿Ë±ë*£¬ñûÖ¾ºÀ£¬¹¬Åô, ÓàÇÙ, Åü´°Ëã·¨¾«¶ÈÆÀ¼Û¼°²ÎÊýÃô¸ÐÐÔ·ÖÎö£¬Öйú¿óÒµ´óѧѧ±¨,2005(3):318-322.

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115. ë¿Ë±ë*, ÌÆ»ª¿¡, ÖÜÇ岨, ÂíÖù¹ú, ʵÓÃÅü´°Ëã·¨µÄ¸Ä½ø¼°´óÆøË®Æûº¬Á¿¶Ô¾«¶ÈÓ°ÏìÆÀ¼Û,Î人´óѧѧ±¨(ÐÅÏ¢¿Æѧ°æ)£¬2008£¬33£¨2£©£º116-119.

116. ë¿Ë±ë*£¬Íõ½¨Ã÷£¬ÕÅÃÏÑô£¬ÖÜÇ岨£¬ÂíÖù¹ú£¬GNSS-RÐźŷ´ÑÝÍÁÈÀË®·ÖÑо¿·ÖÎö£¬Ò£¸ÐÐÅÏ¢£¬2009£¬3£º92-97.

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120. ë¿Ë±ë*, ÌÆ»ª¿¡, ³ÂÖÙÐÂ, ÍõÓÀÇ° , Ò»¸öÓÃÉñ¾­ÍøÂçÓÅ»¯µÄÕë¶ÔASTERÊý¾Ý·´ÑݵرíζȺͷ¢ÉäÂʵĶನ¶ÎËã·¨, ¹úÍÁ×ÊÔ´Ò£¸Ð£¬2007, 73 (3): 18-22.

121. ë¿Ë±ë*, ÌÆ»ª¿¡, ÖÜÇ岨£¬³ÂÖÙÐÂ, ³ÂÓÓÆô£¬ñûÖ¾ºÀ, Ó÷øÉä´«Êä·½³Ì´ÓMODISÊý¾ÝÖз´Ñݵرíζȵķ½·¨£¬À¼ÖÝ´óѧѧ±¨(×ÔÈ»¿Æѧ°æ)£¬2007,43(4):12-17.(EI)

122. ë¿Ë±ë*, ÌÆ»ª¿¡, ÀîÀöÓ¢, ÐíÀöÄÈ, Ò»¸ö´ÓMODISÊý¾Ýͬʱ·´ÑݵرíζȺͷ¢ÉäÂʵÄÉñ¾­ÍøÂçËã·¨, Ò£¸ÐÐÅÏ¢, 2007,92(4):9-15.

123. ë¿Ë±ë*, ÌÆ»ª¿¡, ÖÜÇ岨£¬³ÂÓÓÆô£¬±»¶¯Î¢²¨Ò£¸ÐÍÁÈÀË®·Ö·´ÑÝÑо¿×ÛÊö£¬Ò£¸Ð¼¼ÊõÓëÓ¦Óã¬2007,22(3):466-470.

124. ë¿Ë±ë*, ÌÆ»ª¿¡, ÖÜÇ岨£¬³ÂÖÙУ¬³ÂÓÓÆô£¬ÕÔµÇÖÒ, AMSR-E΢²¨¼«»¯Ö¸ÊýÓëMODISÖ²±»Ö¸Êý¹ØϵÑо¿, ¹úÍÁ×ÊÔ´Ò£¸Ð, 2007, 1: 27-31.

125. ë¿Ë±ë*, ÌÆ»ª¿¡, ³ÂÖÙÐÂ, ÇñÓñ±¦, ñûÖ¾ºÀ, ÀîÂú´º, Ò»¸öÕë¶ÔASTERÊý¾ÝµÄÅü´°Ëã·¨, Ò£¸ÐÐÅÏ¢, 2006, 5:7-11.

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128. ë¿Ë±ë*, Ê©½¨³É,  ñûÖ¾ºÀ, ¼ÖæÂæÂ, Óñ»¶¯Î¢²¨AMSRÊý¾Ý·´Ñݵرíζȼ°·¢ÉäÂÊ·½·¨Ñо¿,¹úÍÁ×ÊÔ´Ò£¸Ð,2005(3):14-18

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