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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >The accuracy of the NSCAT 1 vector winds: Comparisons with National Data Buoy Center buoys
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The accuracy of the NSCAT 1 vector winds: Comparisons with National Data Buoy Center buoys

机译:NSCAT 1矢量风的准确性:与国家数据浮标中心浮标的比较

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The overall accuracies of vector wind measurements from the NASA scatterometer (NSCAT) are quantified by comparisons with collocated data from operational U.S. National Data Buoy Center ocean buoys. A vector correlation statistic is used to examine the geographical distribution of full-mission NSCAT-buoy differences. The dependences of the vector correlation on collocation radius and scatterometer errors such as wind speed offset and random component errors are quantified. For purposes of NSCAT validation, 30 ocean moored buoys having high full-mission sample correlations are considered. When applied to this set of ocean buoys, a nonlinear analysis shows that the 25-km resolution NSCAT wind speeds have unity gain, an offset of -0.3 m s~(-1), an rms error of 1.3 m s~(-1), and component standard deviations of approx 1.3 m s~(-1). For wind speeds greater than 6 m s~(-1), fewer than 3% of all collocated solutions have significant ambiguity removal errors. The rms directional difference for the remaining vectors is less than 17 deg. At lower wind speeds the frequency of ambiguity removal errors increases and the directional accuracy of the "correct" vectors decreases with decreasing wind speed, consistent with the assumptions of the random error model underlying the nonlinear wind speed regression approach. While the primary emphasis of this paper is on determining the quantitative accuracy of the NSCAT wind velocity measurements, the analysis techniques and interpretations have more general application to validation studies involving vector quantities.
机译:NASA散射仪(NSCAT)测得的矢量风的总体精度是通过与美国国家数据浮标中心运行中的浮标的并置数据进行比较来量化的。向量相关统计量用于检查全任务NSCAT浮标差异的地理分布。矢量相关性对搭配半径和散射仪误差(例如风速偏移和随机分量误差)的依赖性得以量化。为了进行NSCAT验证,考虑了30个具有高全任务样本相关性的海洋系泊浮标。当应用于这套海洋浮标时,非线性分析表明,分辨率为25 km的NSCAT风速具有单位增益,偏移量为-0.3 ms〜(-1),均方根误差为1.3 ms〜(-1),且组件标准偏差约为1.3 ms〜(-1)。对于大于6 m s〜(-1)的风速,所有并置解决方案中只有不到3%的模糊度去除误差很大。其余向量的均方根方向差小于17度。在较低的风速下,歧义去除误差的频率会增加,并且“正确”矢量的方向精度会随着风速的降低而降低,这与基于非线性风速回归方法的随机误差模型的假设一致。尽管本文的主要重点是确定NSCAT风速测量的定量精度,但分析技术和解释方法在涉及矢量量的验证研究中具有更广泛的应用。

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