[1] JENKINS J P, RICHARDSON A D, BRASWELL B H, et al. Refining light-use efficiency calculations for a deciduous forest canopy using simultaneous tower-based carbon flux and radiometric measurements[J]. Agric For Meteorol, 2007, 143(1):64-79.
[2] BALDOCCHI D, FALGE E, GU Lianhong, et al. FLUXNET:a new tool to study the temporal and spatial variability of ecosystem-scale carbon dioxide, water vapor, and energy flux densities[J]. Bull Am Meteorol Soc, 2001, 82(11):2415-2434.
[3] 包刚.基于MODIS数据的内蒙古陆地植被净第一性生产力遥感估算研究[D].呼和浩特:内蒙古师范大学, 2009.

BAO Gang. Evaluation on Vegetation Net Primary Productivity Using MODIS Data in Inner Mongolia[D]. Hohhot:Inner Mongolia Normal University, 2009.
[4] 隋雪梅.草甸草原光能利用率反演研究:以呼伦贝尔市谢尔塔拉镇为例[D].呼和浩特:内蒙古师范大学, 2013.

SUI Xuemei. Estimation of Light Use Efficiency on Meadow-Steppe:With Xiertala in Hulunner as Example[D]. Hohhot:Inner Mongolia Normal University, 2013.
[5] 王春林, 周国逸, 王旭, 等.复杂地形条件下涡度相关法通量测定修正方法分析[J].中国农业气象, 2007, 28(3):233-240.

WANG Chunlin, ZHOU Guoyi, WANG Xu, et al. Analysis of correction method on eddy flux measurement over complex terrain[J]. Chin J Agrometeorol, 2007, 28(3):233-240.
[6] 张峰, 周广胜, 王玉辉.基于CASA模型的内蒙古典型草原植被净初级生产力动态模拟[J].植物生态学报, 2008, 32(4):786-797.

ZHANG Feng, ZHOU Guangsheng, WANG Yuhui. Dynamics simulation of net primary productivity by a satellite data-driven CASA model in Inner Mongolian typical stepper, China[J]. J Plant Ecol Chin Vers, 2008, 32(4):786-797.
[7] FIELD C B, BEHRENFELD M J, RANDERSON J T, et al. Primary production of the biosphere:integrating terrestrial and oceanic components[J]. Science, 1998, 281(5374):237-240.
[8] POTTER C S, RANDERSON J T, FIELD C B, et al. Terrestrial ecosystem production:a process model based on global satellite and surface data[J]. Glob Biogeochem Cycles, 1993, 7(4):811-841.
[9] PRINCE S D, GOWARD S N. Global primary production:a remote sensing approach[J]. J Biogeogr, 1995, 22(4/5):815-835.
[10] TURNER D P, RITTS W D, COHEN W B, et al. Scaling gross primary production (GPP) over boreal and deciduous forest landscapes in support of MODIS GPP product validation[J]. Remote Sens Environ, 2003, 88(3):256-270.
[11] XIAO Xiangming, ZHANG Qingyuan, BRASWELL B, et al. Modeling gross primary production of temperate deciduous broadleaf forest using satellite images and climate data[J]. Remote Sens Environ, 2004, 91(2):256-270.
[12] ZHAO Maosheng, HEINSCH F A, NEMANI R R, et al. Improvements of the MODIS terrestrial gross and net primary production global data set[J]. Remote Sens Environ, 2005, 95(2):164-176.
[13] 朴世龙, 方精云, 郭庆华.利用CASA模型估算我国植被净第一性生产力[J].植物生态学报, 2001, 25(5):603-608.

PIAO Shilong, FANG Jingyun, GUO Qinghua. Application of CASA model to the estimation of Chinese terrestrial net primary productivity[J]. Acta Phytoecol Sin, 2001, 25(5):603-608.
[14] 朱文泉, 潘耀忠, 张锦水.中国陆地植被净初级生产力遥感估算[J].植物生态学报, 2007, 31(3):413-424.

ZHU Wenquan, PAN Yaozhong, ZHANG Jinshui. Estimation of net primary productivity of Chinese terrestrial vegetation based on remote sensing[J]. J Plant Ecol Chin Vers, 2007, 31(3):413-424.
[15] 孙睿, 朱启疆.陆地植被净第一性生产力的研究[J].应用生态学报, 1999, 10(6):757-760.

SUN Rui, ZHU Qijiang. Net primary productivity of terrestrial vegetation:a review on related researches[J]. Chin J Appl Ecol, 1999, 10(6):757-760.
[16] 胡海清, 苏志杰, 孙龙, 等.基于光能利用率模型估算大兴安岭北部火烧迹地生产力[J].东北林业大学学报, 2013, 41(5):71-74.

HU Haiqing, SU Zhijie, SUN Long, et al. Estimating net primary productivity of Northern Daxing'an Mountain burned black based on light utility efficiency model[J]. J Northeast For Univ, 2013, 41(5):71-74.
[17] 徐林, 莫路锋, 宣子蔚, 等.基于WSN的土壤碳通量测量系统[J].林业科学, 2013, 49(2):122-126.

XU Lin, MO Lufeng, XUAN Ziwei, et al. System of measuring soil carbon flux based on wireless sensor network[J]. Sci Silv Sin, 2013, 49(2):122-126.
[18] TALZI I, HASLER A, GRUBER S, et al. Permasense:investigating permafrost with a wsn in the swiss alps[C]//EMNETS I V. Proceedings of the 4th workshop on Embedded Networked Sensors. Cork:[s. n.], 2007:8-12.
[19] SURI A, IYENGAR S S, CHO E. Ecoinformatics using wireless sensor networks:An overview[J]. Ecol Inform, 2006, 1(3):287-293.
[20] 吕芸帙, 杨旭, 骆祖莹.基于无线传感器网络的植被叶面积指数测量方法[J].计算机研究与发展, 2010, 47(增刊):1-4.

LÜ Yunzhi, YANG Xu, LUO Zuying. An approach of LAI measurement based on wireless sensor network[J]. J Computer Res Dev, 2010, 47(supp):1-4.
[21] 孙成, 江洪, 周国模, 等.我国亚热带毛竹林CO2通量的变异特征[J].应用生态学报, 2013, 24(10):2717-2724.

SUN Cheng, JIANG Hong, ZHOU Guomo, et al. Variation characteristic of CO2 flux in Phyllostachys edulis forest ecosystem in subtropical region of China[J]. Chin J Appl Ecol, 2013, 24(10):2717-2724.