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便携式高频地波雷达台湾海峡浪高观测
作者姓名:ZHOU Hao  ROARTY Hugh  WEN Biyang
作者单位:School of Electronic Information, Wuhan University, Wuhan 430072, China;Suzhou Institute of Wuhan University, Suzhou 215123, China,Institute of Marine and Coastal Sciences, Rutgers University, New Jersey 08901, USA,School of Electronic Information, Wuhan University, Wuhan 430072, China
基金项目:The National Natural Science Foundation of China under contract No. 61371198; the National Special Program for Key Scientific Instrument and Equipment development of China under contract No. 2013YQ160793; the Natural Science Foundation of Jiangsu Province of China under contract No. BK2012199.
摘    要:As an important equipment for sea state remote sensing, high frequency surface wave radar(HFSWR) has received more and more attention. The conventional method for wave height inversion is based on the ratio of the integration of the second-order spectral continuum to that of the first-order region, where the strong external noise and the incorrect delineation of the first- and second-order Doppler spectral regions due to spectral aliasing are two major sources of errors in the wave height. To account for these factors, two more indices are introduced to the wave height estimation, i.e., the ratio of the maximum power of the second-order continuum to that of the Bragg spectral region(RSCB) and the ratio of the power of the second harmonic peak to that of the Bragg peak(RSHB). Both indices also have a strong correlation with the underlying wave height. On the basis of all these indices an empirical model is proposed to estimate the wave height. This method has been used in a three-months long experiment of the ocean state measuring and analyzing radar, type S(OSMAR-S), which is a portable HFSWR with compact cross-loop/monopole receive antennas developed by Wuhan University since 2006. During the experiment in the Taiwan Strait, the significant wave height varied from 0 to 5 m. The significant wave heights estimated by the OSMAR-S correlate well with the data provided by the Oceanweather Inc. for comparison, with a correlation coefficient of 0.74 and a root mean square error(RMSE) of 0.77 m. The proposed method has made an effective improvement to the wave height estimation and thus a further step toward operational use of the OSMAR-S in the wave height extraction.

关 键 词:wave  height  high  frequency  surface  wave  radar  field  experiment  comparison  Taiwan  Strait
收稿时间:2013/12/12 0:00:00
修稿时间:2014/9/23 0:00:00

Wave height measurement in the Taiwan Strait with a portable high frequency surface wave radar
ZHOU Hao,ROARTY Hugh,WEN Biyang.Wave height measurement in the Taiwan Strait with a portable high frequency surface wave radar[J].Acta Oceanologica Sinica,2015,34(1):73-78.
Authors:ZHOU Hao  ROARTY Hugh and WEN Biyang
Institution:1.School of Electronic Information, Wuhan University, Wuhan 430072, China;Suzhou Institute of Wuhan University, Suzhou 215123, China2.Institute of Marine and Coastal Sciences, Rutgers University, New Jersey 08901, USA3.School of Electronic Information, Wuhan University, Wuhan 430072, China
Abstract:As an important equipment for sea state remote sensing, high frequency surface wave radar (HFSWR) has received more and more attention. The conventional method for wave height inversion is based on the ratio of the integration of the second-order spectral continuum to that of the first-order region, where the strong external noise and the incorrect delineation of the first- and second-order doppler spectral regions due to spectral aliasing are two major sources of errors in the wave height. To account for these factors, two more indices are introduced to the wave height estimation, i.e., the ratio of the maximum power of the second-order continuum to that of the Bragg spectral region (RSCB) and the ratio of the power of the second harmonic peak to that of the Bragg peak (RSHB). Both indices also have a strong correlation with the underlying wave height. On the basis of all these indices an empirical model is proposed to estimate the wave height. This method has been used in a three-months long experiment of the ocean state measuring and analyzing radar, type S (OSMAR-S), which is a portable HFSWR with compact cross-loop/monopole receive antennas developed by Wuhan University since 2006. during the experiment in the Taiwan Strait, the significant wave height varied from 0 to 5 m. The significant wave heights estimated by the OSMAR-S correlate well with the data provided by the Oceanweather Inc. for comparison, with a correlation coefficient of 0.74 and a root mean square error (RMSE) of 0.77 m. The proposed method has made an effective improvement to the wave height estimation and thus a further step toward operational use of the OSMAR-S in the wave height extraction.
Keywords:wave height  high frequency surface wave radar  field experiment  comparison  Taiwan Strait
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