Predicting indices of the ionosphere response to solar activity for the ascending phase of the 25th solar cycle
Autor: | T.L. Gulyaeva |
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Rok vydání: | 2019 |
Předmět: |
Atmospheric Science
Sunspot 010504 meteorology & atmospheric sciences Nowcasting Meteorology Aerospace Engineering Astronomy and Astrophysics Plasmasphere 01 natural sciences International Reference Ionosphere Solar cycle Geophysics Amplitude Critical frequency Space and Planetary Science 0103 physical sciences General Earth and Planetary Sciences Environmental science Ionosphere 010303 astronomy & astrophysics 0105 earth and related environmental sciences |
Zdroj: | Advances in Space Research. 63:1588-1595 |
ISSN: | 0273-1177 |
DOI: | 10.1016/j.asr.2018.11.002 |
Popis: | The international reference ionosphere, IRI, and its extension to plasmasphere, IRI-Plas, models require reliable prediction of solar and ionospheric proxy indices of solar activity for nowcasting and forecasting of the ionosphere parameters. It is shown that IRI prediction errors could increase for the F2 layer critical frequency foF2 and the peak height hmF2 due to erroneous predictions of the ionospheric global IG index and the international sunspot number SSN1 index on which IRI and IRI-Plas models are built. Regression relation is introduced to produce daily SSN1 proxy index from new time series SSN2 index provided from June 2015, after recalibration of sunspots data. To avoid extra errors of the ionosphere model a new solar activity prediction (SAP) model for the ascending part of the solar cycle SC25 is proposed which expresses analytically the SSN1 proxy index and the 10.7-cm radio flux F10.7 index in terms of the phase of the solar cycle, Φ. SAP model is based on monthly indices observed during the descending part of SC24 complemented with forecast of time and amplitude for SC25 peak. The strength of SC25 is predicted to be less than that of SC24 as shown with their amplitudes for eight types of indices driving IRI-Plas model. |
Databáze: | OpenAIRE |
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