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Micro Radar Surface Velocimetry for Hydrologic Signal Processing Using a Bandpass Filtering Approach

机译:带通滤波方法的水文信​​号微雷达表面测速

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The collection of hydrological data is particularly important for the utilization and management of water resources, water conservation, and flood control. Most of the hydrological observation operations should be conducted manually and are time-consuming, strenuous, dangerous, and have low precision. In this study, the shortcomings of the manual observations are overcome and the uncertainties related to the radar-based flow velocity estimations by a sensor in the radar surface current meter are explored. This includes an automatic observation feature and analyses are conducted using the radar signals that are received by the instruments for the real-time observation of the signals. In this study, experiments were conducted at the Water Resources Planning Institute (WRPI) of the Water Resources Agency, Ministry of Economic Affairs, Taiwan and the surface velocity was estimated using the conventional fast Fourier transform (FFT), wavelet transform (WT), and a bandpass filter. The experimental results after signal processing using the bandpass filter were precise, when the tilt angle ranged between 20 and 40 degrees. The 10.525 GHz radar surface current meter adopted in this study is suitable for a tilt angle of 20–40 degrees; the measurement error will be relatively large if the tilt angle is less than 20 degrees or more than 40 degrees.
机译:水文数据的收集对于水资源的利用和管理,节水和防洪特别重要。大多数水文观测操作应手动进行,这很费时,费力,危险并且精度低。在这项研究中,克服了手工观测的缺点,并探索了与雷达表面电流计中的传感器基于雷达的流速估计有关的不确定性。这包括自动观察功能,并使用仪器接收的雷达信号进行分析,以实时观察信号。在这项研究中,实验是在台湾经济部水资源局水资源规划研究所(WRPI)进行的,并使用常规的快速傅里叶变换(FFT),小波变换(WT)估算了表面速度,和一个带通滤波器。当倾斜角在20到40度之间时,使用带通滤波器进行信号处理后的实验结果是精确的。本研究采用的10.525 GHz雷达表面电流计适用于20–40度的倾斜角。如果倾斜角度小于20度或大于40度,则测量误差会相对较大。

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