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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Spherical cap harmonic analysis of Super Dual Auroral Radar Network (SuperDARN) observations for generating maps of ionospheric convection
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Spherical cap harmonic analysis of Super Dual Auroral Radar Network (SuperDARN) observations for generating maps of ionospheric convection

机译:超级双极光雷达网络(SuperDARN)观测的球冠谐波分析,用于生成电离层对流图

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A spherical cap harmonic analysis (SCHA) technique is introduced for mapping the 2-D high-latitude ionospheric convection pattern based on Super Dual Auroral Radar Network (SuperDARN) velocity measurements. The current method for generating such maps is the FIT technique which generates global-scale maps over the entire convection region. This is accomplished by combining observations with a statistical model to prevent unphysical solutions in areas away from the observation points and by forcing the plasma flow to zero at the low-latitude boundary of the convection zone. Both constraints distort the mapped convection and require a preconception of where the plasma Clow lines should close. By focusing on mapping the convection over a region well covered by velocity observations, the SCHA technique is freed of these constraints and more accurately reproduces local convection. We generate large-scale convection maps from SuperDARN data for various interplanetary magnetic field (IMF) conditions during periods of widespread radar coverage to show the patterns are consistent with expectations for various IMF configurations. We validate the SCHA maps by comparing them with the 2-D ion drifts measured by the DMSP satellites and with the 2-D convection vectors obtained by merging SuperDARN measurements at beam crossings. The SCHA technique is shown to perform comparably to the FIT technique over regions of good data coverage. For limited data coverage and over regions of highly variable flow, particularly near the equatorward edge of the mapping region, the SCHA technique provides a better solution for mapping ionospheric convection based on SuperDARN radar observations.
机译:介绍了一种基于超双极光雷达网络(SuperDARN)速度测量的二维高纬电离层对流模式的球形帽谐波分析(SCHA)技术。用于生成这种图的当前方法是FIT技术,该技术在整个对流区域上生成全局比例的图。这是通过将观察值与统计模型相结合以防止在远离观察点的区域中进行非物理解并通过在对流区的低纬度边界处迫使等离子体流为零来实现的。这两个约束都会扭曲映射的对流,并且需要对等离子Clow线应在何处闭合的先入为主。通过专注于将对流映射到速度观测所覆盖的区域,SCHA技术摆脱了这些约束,可以更准确地再现局部对流。我们从SuperDARN数据生成了大范围的对流图,该数据是在雷达广泛覆盖期间各种行星际磁场(IMF)条件下显示的,其模式与对各种IMF配置的预期一致。我们通过将SCHA图与DMSP卫星测得的2-D离子漂移以及通过合并束流交叉处的SuperDARN测量获得的2-D对流向量进行比较来验证SCHA图。在良好的数据覆盖范围内,SCHA技术表现出与FIT技术相当的性能。对于有限的数据覆盖范围和流动高度可变的区域,特别是在制图区域的赤道边缘附近,SCHA技术提供了一种更好的解决方案,用于基于SuperDARN雷达观测来绘制电离层对流。

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