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太阳活动周期24中地磁扰动期间的亚极光和中纬度全球导航卫星系统旋转速率指数(ROTI)性能:迈向风暴早期探测

Sub-Auroral and Mid-Latitude GNSS ROTI Performance during Solar Cycle 24 Geomagnetic Disturbed Periods: Towards Storm's Early Sensing.

作者信息

Kotulak Kacper, Krankowski Andrzej, Froń Adam, Flisek Paweł, Wang Ningbo, Li Zishen, Błaszkiewicz Leszek

机构信息

Space Radio-Diagnostics Research Centre, University of Warmia and Mazury in Olsztyn, Oczapowski St. 2, 10-719 Olsztyn, Poland.

Aerospace Information Research Institute (AIR), Chinese Academy of Sciences (CAS), No 9 Dengzhuang South Road, Beijing 100094, China.

出版信息

Sensors (Basel). 2021 Jun 24;21(13):4325. doi: 10.3390/s21134325.

Abstract

Geomagnetic storms-triggered by the interaction between Earth's magnetosphere and interplanetary magnetic field, driven by solar activity-are important for many Earth-bound aspects of life. Serious events may impact the electroenergetic infrastructure, but even weaker storms generate noticeable irregularities in the density of ionospheric plasma. Ionosphere electron density gradients interact with electromagnetic radiation in the radiofrequency domain, affecting sub- and trans-ionospheric transmissions. The main objective of the manuscript is to find key features of the storm-induced plasma density behaviour irregularities in regard to the event's magnitude and general geomagnetic conditions. We also aim to set the foundations for the mid-latitude ionospheric plasma density now-casting irregularities. In the manuscript, we calculate the GPS+GLONASS-derived rate of TEC (total electron content) index (ROTI) for the meridional sector of 10-20∘ E, covering the latitudes between 40 and 70∘ N. Such an approach reveals equatorward spread of the auroral TEC irregularities reaching down to mid-latitudes. We have assessed the ROTI performance for 57 moderate-to-severe storms that occurred during solar cycle 24 and analyzed their behaviors in regard to the geomagnetic conditions (described by Kp, Dst, AE, Sym-H and PC indices).

摘要

由太阳活动驱动的地球磁层与行星际磁场相互作用引发的地磁风暴,对许多与地球相关的生命方面都很重要。严重的事件可能会影响电能源基础设施,但即使是较弱的风暴也会在电离层等离子体密度中产生明显的不规则性。电离层电子密度梯度与射频域中的电磁辐射相互作用,影响次电离层和跨电离层传输。该手稿的主要目标是找出风暴诱发的等离子体密度行为不规则性在事件强度和一般地磁条件方面的关键特征。我们还旨在为中纬度电离层等离子体密度临近预报不规则性奠定基础。在该手稿中,我们计算了10 - 20°E子午扇区、覆盖40至70°N纬度范围的GPS + GLONASS推导的TEC(总电子含量)指数变化率(ROTI)。这种方法揭示了极光TEC不规则性向赤道方向的扩展,一直延伸到中纬度地区。我们评估了太阳活动周期24期间发生的57次中等到严重风暴的ROTI性能,并分析了它们在地磁条件(由Kp、Dst、AE、Sym - H和PC指数描述)方面的行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a42c/8271561/fdb6b74e6728/sensors-21-04325-g001.jpg

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