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Design of GNSS-R reflection channel based on segment correlation and FFT
Wang, Xianyi; Wu, Di; Sun, Yueqiang; Du, Qifei; Bai, Weihua; Wang, X.
Department空间环境部
Source Publication2011 2nd International Conference on Mechanic Automation and Control Engineering, MACE 2011 - Proceedings
2011
Pages5697-5699
Language中文
ISBN9781424494392
AbstractIn the last decade, using GNSS reflection (GNSS-R) signals for oceanographic remote sensing becomes a new direction in GNSS applications. GNSS-R receiver consists of direct channels for tracking signal from navigation satellite and reflection channels for acquiring the phase delay and Doppler frequency of signal reflected from the ocean. The method of GNSS-R reflection channel based on segment correlation and FFT is presented in this paper. Resources of the reflection channels decrease due to the new algorithm. Performance of the new method is simulated and analyzed. © 2011 IEEE.; In the last decade, using GNSS reflection (GNSS-R) signals for oceanographic remote sensing becomes a new direction in GNSS applications. GNSS-R receiver consists of direct channels for tracking signal from navigation satellite and reflection channels for acquiring the phase delay and Doppler frequency of signal reflected from the ocean. The method of GNSS-R reflection channel based on segment correlation and FFT is presented in this paper. Resources of the reflection channels decrease due to the new algorithm. Performance of the new method is simulated and analyzed. © 2011 IEEE.
Conference Name2011 2nd International Conference on Mechanic Automation and Control Engineering, MACE 2011
Conference DateJuly 15, 2011 - July 17, 2011
Conference PlaceInner Mongolia, China
Indexed ByEI
Document Type会议论文
Identifierhttp://ir.nssc.ac.cn/handle/122/2866
Collection空间环境部
Corresponding AuthorWang, X.
Recommended Citation
GB/T 7714
Wang, Xianyi,Wu, Di,Sun, Yueqiang,et al. Design of GNSS-R reflection channel based on segment correlation and FFT[C]:IEEE Computer Society, 445 Hoes Lane - P.O.Box 1331, Piscataway, NJ 08855-1331, United States,2011:5697-5699.
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