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[1] Zhang X, Liu H*, Zhang X, et al. Allocate soil individuals to soil classes with topsoil spectral characteristics and decision trees[J]. Geoderma, 2018, 320:12–22. (SCI)
[2] Liu H, Whiting M L, Ustin S L, et al. Maximizing the relationship of yield to site-specific management zones with object-oriented segmentation of hyperspectral images[J]. Precision Agriculture, 2018, 19(2): 348-364. (SCI)
[3] Linghua Meng, Xin-Le Zhang, Huanjun Liu*, Dong Guo, Yan Yan, Lele Qin, and Yue Pan. Estimation of Cotton Yield Using the Reconstructed Time-Series Vegetation Index of Landsat Data. CANADIAN JOURNAL OF REMOTE SENSING. 2017, 43(3): 1-12. (SCI)
[4] 刘焕军,宁东浩,康苒,金慧凝,张新乐*,盛磊. 考虑含水量变化信息的土壤有机质光谱预测模型[J]. 光谱学与光谱分析,2017,(02):566-570. (SCI)
[5] Liu Huan-jun, Kang Ran, Ustin Susan, Zhang Xin-le*, Fu Qiang, Sheng Lei. Cotton yield predicting at within field scale with time series hyperspectral imagery. Spectroscopy and Spectral Analysis, 2016, 36(6): 2585-2589. (SCI)
[6] Liu H, Huffman T*, Liu J, Li Z, Daneshfar B, Zhang X. Integration of multi-disciplinary geospatial data for delineating agroecosystem uniform management zones[J]. Environmental monitoring and assessment, 2015, 187(1): 4102. (SCI)
[7] LIU, Huan-jun; WU, Bing-fang; ZHAO, Chun-jiang; ZHAO, Yun-sheng. Effect of Spectral Resolution on Black Soil Organic Matter Content Predicting Model Based on Laboratory Reflectance. Spectroscopy and Spectral Analysis, 2012, 32(3): 739-742. (SCI)
[8] H. J. LIU, X. L. ZHANG, W. T. YU, B. ZHANG, J BLACKWELL, K. S. SONG. Simulating models for Phaeozem hyperspectral reflectance. Internal Journal of Remote Sensing, 2011, 32(13): 3819-3834. (SCI)
[9] HuanJun Liu, Yuanzhi Zhang, Bai Zhang. Novel hyperspectral reflectance models for estimating black-soil organic matter in Northeast China. Environmental Monitoring and Assessment, 2009, 154(1-4): 147-154. (SCI)
[10] LIU, Huan-jun; ZHANG, Xin-le; ZHENG, Shu-feng; TANG, Na; HU, Yan-liang. Black Soil Organic Matter Predicting Model Based on Field Hyperspectral Reflectance. Spectroscopy and Spectral Analysis, 2010, 30 (12): 3355-3358. (SCI)
[11] LIU Huan-jun, YU Wan-tai, ZHANG Xin-le, Ma Qiang, Zhou Hua, JIANG Zi-shao. Study on the Main Influencing Factors of Black Soil Spectral Characteristics. Spectroscopy and Spectral Analysis, 2009, 29(11): 3019-3022.(SCI)
[12] LIU Huan-Jun, ZHANG Yuan-Zhi, ZHANG Xin-Le, ZHANG Bai, SONG Kai-Shan, WANG Zong-Ming and TANG Na. Quantitative Analysis of Soil Moisture Effects on Black-soil Reflectance. Pedosphere, 2009, 19(4): 532-540. (SCI)
[13] LIU Huan-jun, ZHANG Bai, ZHANG Yuan-zhi, SONG Kai-shan, WANG Zong-ming, LI Fang, HU Mao-gui. Soil Taxonomy on the Basis of Reflectance Spectral Characteristics. Spectroscopy and Spectral Analysis, 2008, 28(3): 624-628. (SCI)
[14] LIU Huan-Jun, ZHANG Bai, WANG Zong-Ming, SONG Kai-Shan, HU Mao-gui, DUAN Hong-Tao, SOIL SALINE-ALKALIZATION EVALUATION BASING ON SPECTRAL REFLECTANCE CHARACTERISTICS. J. Infrared Millim. Waves, 2008, 27(2): 138-142.(SCI)
[15] LIU Huan-jun, ZHANG Bai, LIU Dian-wei, SONG Kai-shan, WANG Zong-ming, YANG Fei. Black Soil Organic Matter Content Prediction Based on Reflectance Simulation Models. Spectroscopy and Spectral Analysis, 2008, 28(12): 2947-2950. (SCI)
[16] 刘焕军,潘越,窦欣,张新乐,邱政超,徐梦园,谢雅慧,王楠.黑土区田块尺度土壤有机质含量遥感反演模型[J].农业工程学报,2018,34(01):127-133. (EI)
[17] 张新乐,窦欣,谢雅慧,刘焕军*,王楠,王翔,潘越.引入时相信息的耕地土壤有机质遥感反演模型[J].农业工程学报,2018(04):143-150+315. (EI)
[18] 张新乐,徐梦园,刘焕军*,孟令华,邱政超,潘越,谢雅慧.引入地形因子的黑土区大豆干生物量遥感反演模型及验证[J].农业工程学报,2017,33(16):168-173. (EI)
[19] 刘焕军, 邱政超,孟令华,付强,姜佰文*,闫岩,徐梦园.黑土区田块尺度遥感精准管理分区[J].遥感学报,2017,21(03):470-478. (EI)
[20] 刘焕军, 张小康,张新乐*,武洪峰,金慧凝,于胜男,邱政超. 面向土壤分类的高光谱反射特征参数模型[J]. 遥感学报,2017,(01):105-114. (EI)
[21] 金慧凝, 张新乐, 刘焕军*,等. 基于光谱吸收特征的土壤含水量预测模型研究[J]. 土壤学报, 2016, 53(3):627-635.
[22] 刘焕军, 孟令华, 张新乐*, SusanUstin, 宁东浩, 孙思雨. 基于时间序列 Landsat 影像的棉花估产模型[J]. 农业工程学报, 2015, 31(17): 215-220.(EI)
[23] 李娜, 刘焕军*, 黄文江, 宋戈, 张新乐, 尚倩倩. 基于HJ_1A_1B CCD数据的雹灾监测与评价. 农业工程学报. 2011, 27(5):237-244. Liu Huanjun, Meng Linghua, Zhang Xinle, Susan Ustin, Ning Donghao, Sun Siyu. Estimation model of cotton yield with time series Landsat images, Transactions of the Chinese Society of Agricultural Engineering (EI)
[24] 刘焕军, 赵春江, 王纪华, 黄文江, 张新乐. 黑土典型区土壤有机质遥感反演研究. 农业工程学报, 2011, 27(8): 211-215. (EI)
[25] 刘焕军, 宇万太, 张新乐, 沈善敏, 马强, 周桦. 中国东北黑土带土壤线空间变异规律. 农业工程学报, 2009, 25(10): 166-170. (EI)
[26] HU Yan-Liang, LIU Huan-Jun*, YUAN Zhao-Hua, TANG Na, YU Xiao-Jing. Hyperspectral predicting model for Black soil moisture at different depth. 2010 Second IITA Conference on Geoscience and Remote Sensing, 2010.8. (EI)
[27] ZHANG Xinle, LIU Huanjun*, ZHANG Shuwen. Spatial trend simulation of regional urbanization level: A case study of the middle part of Liaoning Province. Second IITA Conference on Geoscience and Remote Sensing, 2010.8. (EI)
[28] Liu, Huanjun, Xinle Zhang, Xiao Ding, Ted Huffman, and Jiangui Liu. "Delineating regional and local Uniform Management Zones of agroecosystems using geospatial data." In Agro-Geoinformatics (Agro-Geoinformatics), 2013 Second International Conference on, pp. 532-537. IEEE, 2013. (EI)