(1)學術(shù)論文
[1]Wen, J., Wu, X., Wang, J., Tang, R., Ma, D., Zeng, Q., et al. (2022). Characterizing the effect of spatial heterogeneity and the deployment of sampled plots on the uncertainty of ground “truth” on a coarse grid scale: Case study for near-infrared (NIR) surface reflectance. Journal of Geophysical Research: Atmospheres, 127, e2022JD036779. https://doi. org/10.1029/2022JD036779
[2]Wen, Jianguang; Lin, Xingwen; Wu, Xiaodan; Bao, Yunfei; You, Dongqin; Gong, Baochang; Tang, Yong; Wu, Shengbiao; Xiao, Qing; Liu, Qinhuo.2022. Validation of the MCD43A3 Collection 6 and GLASS V04 Snow-Free Albedo Products Over Rugged Terrain. IEEE Transactions on Geoscience and Remote Sensing.60. 10.1109/TGRS.2022.3214103
[3]Wen Jianguang, Dou baocheng, You dongqin, Tang yong, Xiao Qing, Liu qinhuo, Forward a Small-Time Scale BRDF/albedo by Multi-sensors Combined BRDF inversion (MCBI) model, IEEE Transaction of GeoScience and Remote Sensing, 2017, 22(5),683-697. (IF= 4.942)
[4]You, D., Wen, J*., Liu, Q., Zhang, Y., Tang, Y., Liu, Q., & Xie, H. (2020). The Component-Spectra-Parameterized Angular and Spectral Kernel-Driven Model: A Potential Solution for Global BRDF/Albedo Retrieval From Multisensor Satellite Data. IEEE Transactions on Geoscience and Remote Sensing. 58(12): 8674-8688
[5]Hao, D., Wen, J*., Xiao, Q., You, D., & Tang, Y. (2020). An Improved Topography-Coupled Kernel-Driven Model for Land Surface Anisotropic Reflectance. IEEE Transactions on Geoscience and Remote Sensing, 58(4), 2833-2847.
[6]Shengbiao Wu , Jianguang Wen*, Jean-Philippe Gastellu-Etchegorry , Qinhuo Liu, Dongqin You , Qing Xiao , DaLei Hao , Xingwen Lin, Tiangang Yin, 2019. The definition of remotely sensed reflectance quantities suitable for rugged terrain,Remote Sensing of Environment, 225,403–415
[7]Wu, S., Wen, J*., Lin, X., Hao, D., You, D., Xiao, Q., Liu, Q. and Yin, T., 2019. Modeling Discrete Forest Anisotropic Reflectance Over a Sloped Surface With an Extended GOMS and SAIL Model. IEEE Transactions on Geoscience and Remote Sensing,57(2), pp. 944-957.
[8]Hao, D., Wen, J*., Xiao, Q., Wu, S., Lin, X., You, D. and Tang, Y., 2018. Modeling Anisotropic Reflectance Over Composite Sloping Terrain. IEEE Transactions on Geoscience and Remote Sensing, 56(7), pp.3903-3923.
[9]聞建光,柳欽火,李增元,李新,劉紹民,肖青,高志海,馬明國,車濤,劉良云,方紅亮,閻廣建,葛詠,陳爾學,張勇,馬靈玲,吳小丹,陳曦.2023.中國遙感實驗與真實性檢驗的發(fā)展思考.遙感學報,27(3): 573-583 DOI: 10.11834/jrs.20232673
[10]聞建光,肖青,鐘守熠,唐勇,陳曦,魏秋方,吳小丹,林興穩(wěn),歐陽曉瑩,游冬琴,柳欽火.2023.高分遙感共性產(chǎn)品算法測評與真實性檢驗技術(shù)體系及應(yīng)用實例.遙感學報,27(3): 780-789 DOI: 10.11834/jrs.20221716
(2)專著
[1]聞建光; 劉強; 柳欽火; 肖青; 李小文; 陸表二向反射特性遙感建模及反照率反演, 科學出版社, 2015
[2]肖青; 聞建光; 唐伯惠; 吳小丹; 定量遙感實驗, 科學出版社, 2023
(3)國家標準
[1]中國標準,植被指數(shù)遙感產(chǎn)品真實性檢驗, GB/T 40038-2021
[2]中國標準,反照率遙感產(chǎn)品真實性檢驗, GB/T 41279-2022
[3]中國標準,光合有效輻射遙感產(chǎn)品真實性檢驗, GB/T 41281-2022
[4]中國標準,陸地遙感產(chǎn)品真實性檢驗地面觀測場的選址和布設(shè), GB/T 41540-2022
[5]中國標準,氣溶膠光學厚度遙感產(chǎn)品真實性檢驗, GB/T 41535-2022
[6]中國標準,積雪面積遙感產(chǎn)品真實性檢驗, GB/T 41537-2022