Estimates of Radial Current Error from High Frequency Radar using MUSIC for Bearing Determination

T. Cook, T. DePaolo, E. Terrill
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引用次数: 6

Abstract

Quality control of surface current measurements from high frequency (HF) radar requires understanding of individual error sources and their contribution to the total error. Radial velocity error due to uncertainty of the bearing determination technique employed by HF radar is observed with both direction finding and phased array techniques. Surface current estimates utilizing Multiple Signal Classification (MUSIC) direction finding algorithm with a compact antenna design are particularly sensitive to the radiation pattern of the receive and transmit antennas. Measuring the antenna pattern is a common and straightforward task that is essential for accurate surface current measurements. Radial current error due to the a distorted antenna pattern is investigated by applying MUSIC to simulated HF radar backscatter for an idealized ocean surface current. A Monte Carlo type treatment of distorted antenna patterns is used to provide statistics of the differences between simulated and estimated surface current. RMS differences between the simulated currents and currents estimated using distorted antenna patterns are 3-12 cm/s greater than those using perfect antenna patterns given a simulated uniform current of 50 cm/s. This type of analysis can be used in conjunction with antenna modeling software to evaluate possible error due to the antenna patterns before installing a HF radar site.
用MUSIC估计高频雷达径向电流误差
高频(HF)雷达表面电流测量的质量控制需要了解单个误差源及其对总误差的贡献。利用测向技术和相控阵技术观测了高频雷达测方位技术的不确定性所导致的径向速度误差。采用紧凑天线设计的多信号分类(MUSIC)测向算法的表面电流估计对接收和发射天线的辐射方向图特别敏感。测量天线方向图是一项常见而直接的任务,对于精确的表面电流测量至关重要。利用MUSIC模拟了理想海面流的高频雷达后向散射,研究了天线方向图畸变引起的径向电流误差。采用蒙特卡罗方法对扭曲的天线方向图进行处理,统计模拟表面电流和估计表面电流之间的差异。在模拟均匀电流为50 cm/s的情况下,使用扭曲天线方向图的模拟电流和估计电流的均方根差比使用完美天线方向图的模拟电流大3-12 cm/s。这种类型的分析可以与天线建模软件一起使用,以评估在安装高频雷达站点之前由于天线模式可能产生的误差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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