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S-Band Doppler Wave Radar System

机译:S波段多普勒雷达系统

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In this paper, a novel shore-based S-band microwave Doppler coherent wave radar (Microwave Ocean Remote SEnsor (MORSE)) is designed to improve wave measurements. Marine radars, which operate in the X band, have been widely used for ocean monitoring because of their low cost, small size and flexibility. However, because of the non-coherent measurements and strong absorption of X-band radio waves by rain, these radar systems suffer considerable performance loss in moist weather. Furthermore, frequent calibrations to modify the modulation transfer function are required. To overcome these shortcomings, MORSE, which operates in the S band, was developed by Wuhan University. Because of the coherent measurements of this sensor, it is able to measure the radial velocity of water particles via the Doppler effect. Then the relation between the velocity spectrum and wave height spectrum can be used to obtain the wave height spectra. Finally, wave parameters are estimated from the wave height spectra by the spectrum moment method. Comparisons between MORSE and Waverider MKIII are conducted in this study, and the results, including the non-directional wave height spectra, significant wave height and average wave period, are calculated and displayed. The correlation coefficient of the significant wave height is larger than 0.9, whereas that of the average wave period is approximately 0.4, demonstrating the effectiveness of MORSE for the continuous monitoring of ocean areas with high accuracy.
机译:本文设计了一种新型的岸基S波段微波多普勒相干波雷达(Microwave Ocean Remote SEnsor(MORSE))来改善波的测量。在X波段工作的船用雷达由于其低成本,小尺寸和灵活性而被广泛用于海洋监测。但是,由于测量的非相干性以及雨水对X波段无线电波的强烈吸收,这些雷达系统在潮湿天气中会遭受相当大的性能损失。此外,需要频繁的校准以修改调制传递函数。为克服这些缺点,武汉大学开发了S波段的MORSE。由于该传感器的相干测量,它能够通过多普勒效应测量水颗粒的径向速度。然后可以利用速度谱和波高谱之间的关系来获得波高谱。最后,通过谱矩法从波高谱中估计出波参数。在这项研究中进行了MORSE和Waverider MKIII的比较,并计算并显示了结果,包括非定向波高谱,有效波高和平均波周期。有效波高的相关系数大于0.9,而平均波高的相关系数约为0.4,证明了MORSE在连续高精度监测海洋区域方面的有效性。

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