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首页> 外文期刊>Geophysical Research Letters >Intercomparisons of total electron content measurements using the Arecibo incoherent scatter radar and GPS
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Intercomparisons of total electron content measurements using the Arecibo incoherent scatter radar and GPS

机译:使用Arecibo非相干散射雷达和GPS测量总电子含量的比对

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摘要

We compare total electron content measurements made using the Arecibo Incoherent Scatter Radar (ISR) with those made using the Global Positioning System (GPS). The ISR measurements have a limited range for these observations, up to 1500 km. We extend these profiles to GPS heights of 20,200 km with the aid of a numerical model. We use a GPS receiver on St. Croix, which has been calibrated using JPL's Global Ionospheric Mapping (GIM) technique. In addition, we also use the ISR to calibrate GPS measurements made at Isabela, PR and see how the calibration holds up on the next day. The GIM technique gives very good results on both a quiet night and a night with a severe ionospheric depletion. Normalizing the Isabela receiver to the ISR also gives good results and shows promise as a way to independently calibrate nearby GPS receivers in the future. Finally, we give evidence that the severe depletion observed by the ISR on the night of June 25/26, 1998 was associated with an elongated TEC depletion. The structure may be related to a disturbance originating in the southern hemisphere. [References: 7]
机译:我们将使用Arecibo非相干散射雷达(ISR)与使用全球定位系统(GPS)进行的总电子含量测量进行了比较。对于这些观测,ISR测量范围有限,最长可达1500 km。我们借助数值模型将这些剖面扩展到20200 km的GPS高度。我们在St. Croix上使用GPS接收器,该接收器已使用JPL的全球电离层测绘(GIM)技术进行了校准。此外,我们还使用ISR校准在美国宾夕法尼亚州伊莎贝拉(Isabela)进行的GPS测量,并查看第二天​​如何进行校准。在安静的夜晚和电离层消耗严重的夜晚,GIM技术都能提供非常好的结果。将Isabela接收器标准化为ISR也可得到良好的结果,并显示出有望在将来独立校准附近的GPS接收器。最后,我们提供的证据表明,ISR在1998年6月25/26日夜间观察到的严重耗竭与TEC耗竭时间延长有关。该结构可能与源自南半球的干扰有关。 [参考:7]

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