Climatology of ionospheric amplitude scintillation on GNSS signals at south American sector during solar cycle 24

被引:7
|
作者
Macho, Eduardo Perez [1 ]
Correia, Emilia [1 ,2 ]
Spogli, Luca [3 ,4 ]
de Assis Honorato Muella, Marcio Tadeu [5 ]
机构
[1] Univ Presbiteriana Mackenzie, CRAAM, Escola Engn, BR-01302907 Sao Paulo, Brazil
[2] Inst Nacl Pesquisas Espaciais INPE, BR-12227010 Sao Jose Dos Campos, Brazil
[3] Ist Nazl Geofis & Vulcanol INGV, I-00143 Rome, Italy
[4] SpacEarth Technol, I-00143 Rome, Italy
[5] Univ Vale Paraiba UNIVAP, BR-12244390 Sao Jose Dos Campos, Brazil
基金
巴西圣保罗研究基金会;
关键词
Scintillation; Irregularities; Ionosphere; GNSS; EIA; IRREGULARITY ZONAL DRIFTS; LOW-LATITUDE REGION; EQUATORIAL SCINTILLATIONS; STORM; IONIZATION; GENERATION; TEC;
D O I
10.1016/j.jastp.2022.105872
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Scintillations are caused by ionospheric irregularities and can affect the propagation of trans-ionospheric radio signals. One way to understand and predict the impact of such irregularities on Global Navigation Satellite System (GNSS) signals is through the spatial/temporal characterization of the scintillation's climatology during different phases of a solar cycle covering different latitudes and longitudes. This characterization is performed using amplitude scintillation index S-4, during the full solar cycle 24, in the South American (SA) sector. The investigation considers the diurnal, daily, and seasonal variation of S-4 index for climatological purpose, and the goal of this study is to investigate the scintillations covering a large spatial scale during the full solar cycle 24. The characterization shows a latitudinal asymmetry, whereas at the south, the scintillations were more frequent and their peak was more distant from the magnetic equator, which can be attributed by the South Atlantic Magnetic Anomaly (SAMA), and/or by the transequatorial meridional neutral winds. It also shows a longitudinal asymmetry, where the scintillations at the eastern sector occurred between November and February, while at the western sector, they occurred during the months of October, November, February and March, which can be attributed to the difference between the magnetic and geographic equators. The occurrence of scintillations during two distinct geomagnetic storms with similar storm time in the SA sector is also presented.
引用
收藏
页数:12
相关论文
共 50 条
  • [1] Statistics of GNSS amplitude scintillation occurrences over Dakar, Senegal, at varying elevation angles during the maximum phase of solar cycle 24
    Akala, A. O.
    Awoyele, A.
    Doherty, P. H.
    SPACE WEATHER-THE INTERNATIONAL JOURNAL OF RESEARCH AND APPLICATIONS, 2016, 14 (03): : 233 - 246
  • [2] Climatology of GPS amplitude scintillations over equatorial Africa during the minimum and ascending phases of solar cycle 24
    Akala, A. O.
    Amaeshi, L. L. N.
    Somoye, E. O.
    Idolor, R. O.
    Okoro, E.
    Doherty, P. H.
    Groves, K. M.
    Carrano, C. S.
    Bridgwood, C. T.
    Baki, P.
    D'ujanga, F. M.
    Seemala, G. K.
    ASTROPHYSICS AND SPACE SCIENCE, 2015, 357 (01)
  • [3] Characteristics of ionospheric scintillation climatology over Indian low-latitude region during the 24th solar maximum period
    Sahithi, K.
    Sridhar, M.
    Kotamraju, Sarat K.
    Kavya, K. Ch. Sri
    Sivavaraprasad, G.
    Ratnam, D. Venkata
    Deepthi, Ch.
    GEODESY AND GEODYNAMICS, 2019, 10 (02) : 110 - 117
  • [4] On the occurrence and strength of multi-frequency multi-GNSS Ionospheric Scintillations in Indian sector during declining phase of solar cycle 24
    Srinivasu, V. K. D.
    Dashora, N.
    Prasad, D. S. V. V. D.
    Niranjan, K.
    Krishna, S. Gopi
    ADVANCES IN SPACE RESEARCH, 2018, 61 (07) : 1761 - 1775
  • [5] Climatology of atmospheric solar tidal mode effects on ionospheric F2 parameters over the American sector during solar minimum between cycles #23 and #24
    Santos, A. M.
    Yang, G.
    Pimenta, A. A.
    Brum, C. G. M.
    Batista, I. S.
    Sobral, J. H. A.
    Andrioli, V. F.
    Batista, P. P.
    Abdu, M. A.
    Souza, J. R.
    Manoharan, P. K.
    Wang, C.
    Li, H.
    Liu, Z.
    FRONTIERS IN ASTRONOMY AND SPACE SCIENCES, 2024, 11
  • [6] On the detection of a solar radio burst event that occurred on 28 August 2022 and its effect on GNSS signals as observed by ionospheric scintillation monitors distributed over the American sector
    Wright, Isaac G.
    Rodrigues, Fabiano S.
    Socola, Josemaria Gomez
    Moraes, Alison O.
    Monico, Joao F. G.
    Sojka, Jan
    Scherliess, Ludger
    Layne, Dan
    Paulino, Igo
    Buriti, Ricardo A.
    Brum, Christiano G. M.
    Terra, Pedrina
    Deshpande, Kshitija
    Vaggu, Pralay R.
    Erickson, Philip J.
    Frissell, Nathaniel A.
    Makela, Jonathan J.
    Scipion, Danny
    JOURNAL OF SPACE WEATHER AND SPACE CLIMATE, 2023, 13
  • [7] Climatology of GPS amplitude scintillations over equatorial Africa during the minimum and ascending phases of solar cycle 24
    A. O. Akala
    L. L. N. Amaeshi
    E. O. Somoye
    R. O. Idolor
    E. Okoro
    P. H. Doherty
    K. M. Groves
    C. S. Carrano
    C. T. Bridgwood
    P. Baki
    F. M. D’ujanga
    G. K. Seemala
    Astrophysics and Space Science, 2015, 357
  • [8] Characteristics of ionospheric scintillation climatology over Indian low-latitude region during the 24th solar maximum period
    K.Sahithi
    M.Sridhar
    Sarat K.Kotamraju
    K.Ch.Sri Kavya
    G.Sivavaraprasad
    D.Venkata Ratnam
    Ch.Deepthi
    Geodesy and Geodynamics, 2019, (02) : 110 - 117
  • [9] Correlation between ionospheric scintillation effects and GNSS positioning over Brazil during the last solar maximum (2012-2014)
    Marra Alves, Daniele Barroca
    de Souza, Eniuce Menezes
    Ferreira Gouveia, Tayna Aparecida
    JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS, 2020, 197
  • [10] Some Characteristics of the Ionospheric Behavior During the Solar Cycle 23 – 24 Minimum
    Eduardo A. Araujo-Pradere
    Rob Redmon
    Mariangel Fedrizzi
    Rodney Viereck
    Tim J. Fuller-Rowell
    Solar Physics, 2011, 274 : 439 - 456