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Overview and outlook of GNSS remote sensing technology and applications
Wan, Wei1; Chen, Xiuwan1; Peng, Xuefeng1; Bai, Weihua1; Xia, Junming1; Liang, Hong1; Zhang, Xuemin1; Xiong, Pan1; Yang, Ting1; Cao, Yunchang1
刊名Yaogan Xuebao/Journal of Remote Sensing
2016
卷号20期号:5页码:858-874
通讯作者Chen, Xiuwan (xwchen@pku.edu.cn)
英文摘要The Global Navigation Satellite Systems (GNSSs), including the United States Global Positioning System (GPS), Russian GLONASS, the European Union's Galileo, and China's BeiDou, provide L-band microwave signals with high temporal resolution. These systemshave extended the applications of the GNSS from positioning/navigation to remote sensing. Since the 1990s, the versatile refracted GNSS signals have been successfully demonstrated to sound the ionosphere and troposphere. In the pasttwo decades, reflected signals, which involve making measurements of the reflections from the Earth, have shown theircapacity for earth observations over wateror land. On the basis of such background, GNSS remote sensing, as a hybrid of GNSS and remote sensing, has been developed over the years. The concepts of GNSS remote sensing can be summarized into two categories: GNSS refractometryand GNSS reflectometry (GNSS-R). The applications of GNSS remote sensing involves atmospheric water vapor, seismo-ionospheric disturbances, oceans, lands, hydrology, and the cryosphere. To further promote the applications of the GNSS remote sensing technology in atmospheric, seismic, and water cycle studies, this review systematically introduces the international and domestic forefront of GNSS remote sensing technology and its applications, with a focus on GNSS/meteorology, GNSS ionospheric seismology, GNSS radio occultation, ocean observations, land applications, cryosphere applications,and missions of GNSS-R. We also discuss and provide an overview of the bottlenecks related to the further development of each branch of GNSS remote sensing. The next generations of GNSS systems, especially GPS III and BeiDou II, are expected to show improved performance and offer excellentcapabilities to users around the globe. This study can provide references for the future development of GNSS remote sensing technologiesand otherrelated subjects. © 2016, Science Press. All right reserved.
收录类别EI
语种中文
WOS记录号WOS:20164402965583
内容类型期刊论文
源URL[http://ir.radi.ac.cn/handle/183411/39693]  
专题遥感与数字地球研究所_SCI/EI期刊论文_期刊论文
作者单位1.State Key Laboratory of Hydroscience and Engineering, Tsinghua University, Beijing
2.100084, China
3.Department of Hydraulic Engineering, Tsinghua University, Beijing
4.100084, China
5.School of Earth and Space Sciences, Peking University, Beijing
6.100871, China
7.National Space Science Center, Chinese Academy of Sciences, Beijing
8.100190, China
9.Meteorological Observation Center, China Meteorological Administration, Beijing
10.100081, China
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GB/T 7714
Wan, Wei,Chen, Xiuwan,Peng, Xuefeng,et al. Overview and outlook of GNSS remote sensing technology and applications[J]. Yaogan Xuebao/Journal of Remote Sensing,2016,20(5):858-874.
APA Wan, Wei.,Chen, Xiuwan.,Peng, Xuefeng.,Bai, Weihua.,Xia, Junming.,...&Hong, Yang.(2016).Overview and outlook of GNSS remote sensing technology and applications.Yaogan Xuebao/Journal of Remote Sensing,20(5),858-874.
MLA Wan, Wei,et al."Overview and outlook of GNSS remote sensing technology and applications".Yaogan Xuebao/Journal of Remote Sensing 20.5(2016):858-874.
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