@inproceedings{bf65b213022e411d801529696cf82847,
title = "Double-mode Integrated System for Observing Sea-surface Wind Field",
abstract = "Spaceborne SAR and scatterometer have their own advantages and weaknesses for measuring sea-surface wind field. The former can measure wind speed with high spatial resolution, but the accuracy is depended on the accuracy of external wind direction. The latter can obtain high-accuracy wind direction and speed simultaneously, but the spatial resolution is relatively low. This paper proposes a new system adopting a single digital antenna to integrate SAR and scatterometer to observe sea-surface wind field simultaneously based on multiple beamforming, and designs the joint time sequence of the transceiver. The proposed double-mode integrated system can not only improve observation accuracy of sea-surface wind field, but also expand observable areas.",
keywords = "SAR, double-mode integrated system, scatterometer, sea-surface wind field, time sequence design",
author = "Hang Li and Liu, \{Wen Kang\} and Sun, \{Guang Cai\} and Xing, \{Meng Dao\} and Zhang, \{Zhen Hua\} and Jie Zhang",
note = "Publisher Copyright: {\textcopyright} 2021 SISE.; 2nd China International SAR Symposium, CISS 2021 ; Conference date: 03-11-2021 Through 05-11-2021",
year = "2021",
doi = "10.23919/CISS51089.2021.9652282",
language = "英语",
series = "CISS 2021 - 2nd China International SAR Symposium",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
booktitle = "CISS 2021 - 2nd China International SAR Symposium",
address = "美国",
}