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Using antenna patterns to improve the quality of SeaSonde HF radar surface surface current maps

机译:使用天线图案来提高海洋地区HF雷达表面表面电流图的质量

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The SeaSonde coastal HF current mapping radar realizes its very small and convenient antenna size by employing the MUSIC direction finding (DF) algorithm, rather than beam forming to determine the bearing angle to each point on the sea plot. Beamforming requires large phased array antennas spanning up to 100 m of linear coastal extent. The SeaSonde uses two colocated crossed loops and an omnidirectional monopole as the receive antenna system. Unique features of DF polar maps can be angle sectorswith sparse coverage or gaps. This occurs when the antenna patterns are distorted by nearby terrain or buildings, a frequent effect observed with all HF radars. In addition, uncorrecteddistortions can produce angle biases (misplacements) of the radial current vectors,sometimes as much as 10°.The actual antenna patterns (with distortions) are now measured with a small battery operated transponder, either from land in front of the antenna or from a boat. These are then inserted into the software to calibrate, i.e., correct for the distortions.A number of algorithms have been evaluated for this correction process, both using simulations (with known input) as well as actual measured sea echo. We present the latest findings on gap and bias mitigation, which show that nearly all of thesedeleterious effects can be reduced to acceptable levels.
机译:Seasonde沿海HF电流映射雷达通过采用音乐方向查找(DF)算法来实现其非常小而方便的天线尺寸,而不是梁成形,以确定对海图上的每个点的轴承角度。波束成形需要大型相位阵列天线,跨越高达100米的线性沿海范围。斯多伦德使用两个Coolocated交叉环和一个全向单极单极作为接收天线系统。 DF极性地图的独特功能可以是稀疏覆盖范围或间接的角度扇区。当天线图案被附近的地形或建筑物扭曲时,发生这种情况,通过所有HF雷达观察到频繁的效果。此外,未校正的横坐变动可以产生径向电流矢量的角度偏置(误操作),有时可以高达10°。现在使用小电池供电的应答器进行实际天线图案(具有扭曲),无论是来自天线前面的陆地或从船上。然后将这些插入到软件中以校准,即,正确的扭曲。已经使用模拟(具有已知输入)以及实际测量的海回波来评估该校正处理的算法数。我们展示了差距和偏见缓解的最新发现,表明几乎所有的胸部效应都可以减少到可接受的水平。

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