Author(s):
Prol, Fabricio dos Santos [UNESP] ; Camargo, Paulo de Oliveira [UNESP] ; Hernandez-Pajares, Manuel ; Assis Honorato Muella, Marcio Tadeu de
Date: 2019
Persistent ID: http://hdl.handle.net/11449/185651
Origin: Oasisbr
Subject(s): 3-D ionosphere; equatorial ionization anomaly (EIA); Global Navigation Satellite System (GNSS); multiplicative algebraic reconstruction technique (MART); prereversal enhancement ExB drift; radio occultation (RO); 3-D ionosphere; 3-D ionosphere; equatorial ionization anomaly (EIA); equatorial ionization anomaly (EIA); Global Navigation Satellite System (GNSS); Global Navigation Satellite System (GNSS); multiplicative algebraic reconstruction technique (MART); multiplicative algebraic reconstruction technique (MART); prereversal enhancement ExB drift; prereversal enhancement ExB drift; radio occultation (RO); radio occultation (RO)
Description
Made available in DSpace on 2019-10-04T12:37:16Z (GMT). No. of bitstreams: 0 Previous issue date: 2019-05-01
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
A new tomographic method was developed with the main goal of mapping the ionosphere in the region of Brazil. The ionospheric background was estimated based on ionosonde and radio-occultation measurements to overcome the lack of data provided by climatological models in low-latitude regions. A new method of performing iterations of the conventional multiplicative algebraic reconstruction technique (MART) was also used in order to avoid nonilluminated cells and improve the spatial resolution. The quality assessment using independent ionosonde data during two weeks in 2013 showed a better performance of the proposed method in comparison to the international reference ionosphere, providing improvements of 31% for the F-layer peak height h(m) and 24% for the ionospheric peak of electron density N-m. The tomographic technique was also evaluated in the estimation of the total electron content (TEC) and in the single-frequency precise point positioning (PPP). Improvements of 59% in TEC and 31% in the single-frequency PPP were obtained in comparison to the results derived from global ionospheric maps. In addition, a better daily description of the ionosphere was obtained using the proposed method, where it was possible to detect the peak height increasing associated with the prereversal enhancement of the vertical plasma drift that occurs near sunset hours. The results reveal that the modified form of the MART tomographic technique can be considered a useful tool for technical and scientific communities involved in space weather, spatial geodesy, and telecommunications.
Sao Paulo State Univ, Sch Sci & Technol, Cartog Dept, BR-19060900 Sao Paulo, Brazil
Univ Politecn Cataluna, CTE, IEEC, IonSAT, E-08034 Barcelona, Spain
Univ Vale Paraiba, IP&D, Lab Fis & Astron, BR-12244000 Sao Paulo, Brazil
Sao Paulo State Univ, Sch Sci & Technol, Cartog Dept, BR-19060900 Sao Paulo, Brazil
FAPESP: 2015/15027-7
FAPESP: 2016/22011-2
CNPq: 304674/2014-1
CNPq: 429885/2016-4