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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >A Bootstrap-Based Approach for Improving Measurements by Retarding Potential Analyzers
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A Bootstrap-Based Approach for Improving Measurements by Retarding Potential Analyzers

机译:一种基于引导的方法,用于通过延迟潜在分析仪改善测量

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摘要

Retarding potential analyzers are frequently flown on small satellites as in situ ion probes,from which can be derived a number of ion plasma parameters from a current-voltage relationship (I-V curve). The traditional method of analyzing retarding potential analyzer data produces inaccuracies in derived estimates when there is significant noise present in the instrument measurements. In this study we investigate the dependencies between parameters that produce uncertainties in noisy I-V curves. It is found that multiple combinations of ion velocity and spacecraft floating potential can produce I-V curves that lie within the noise envelope, which renders it difficult for a traditional curve fitting technique to objectively and accurately estimate parameters from a noisy I-V curve. In this paper we propose BATFORD-a bootstrap resampling-based technique to improve the accuracies of parameter estimates. It is particularly useful when signal-to-noise ratios are low. The algorithm is tested against a traditional curve fitting method for a simulated data set comprising I-V curves for the middle- and low-latitude ionosphere at low Earth orbit altitudes around 450 km, where O+ is the predominant species. BATFORD is found to provide more robust and reliable estimates assuming generalized noise distribution characteristics. As further validation, the algorithm is applied to satellite data from an orbit with deep plasma bubbles and hence low signal levels.
机译:延迟潜在分析仪经常在小卫星上飞行,如原位离子探针,从中可以从电流 - 电压关系(I-V曲线)导出许多离子等离子体参数。当仪器测量中存在显着的噪声时,传统的分析延迟潜在分析仪数据的分析方法在导出的估计中产生不准确性。在这项研究中,我们调查在噪声I-V曲线中产生不确定性的参数之间的依赖关系。发现离子速度和航天器浮动势的多种组合可以产生位于噪声包络内的I-V曲线,这使得传统的曲线拟合技术难以从嘈杂的I-V曲线造型地估计参数。在本文中,我们提出了Batford-A基于引导重采样的技术,以提高参数估计的准确性。当信噪比比低时,它特别有用。该算法针对传统的曲线拟合方法测试,用于模拟数据集,该数据集包括低纬度电离层的I-V曲线,在低地轨道上左右450 km,其中o +是主要的物种。假设广义噪声分布特征,发现蝙蝠福德提供更强大和可靠的估计。作为进一步验证,该算法应用于来自具有深等离子体气泡的轨道的卫星数据,因此低信号电平。

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