Ionospheric equivalent slab thickness ingestion into the NeQuick model

被引:1
作者
Pignalberi, Alessio [1 ,4 ]
Nava, Bruno [2 ]
Pietrella, Marco [1 ]
Pezzopane, Michael [1 ]
Coisson, Pierdavide [3 ]
Cesaroni, Claudio [1 ]
机构
[1] Ist Nazl Geofis & Vulcanol, Via Vigna Murata 605, I-00143 Rome, Italy
[2] Abdus Salam Int Ctr Theoret Phys, Str Costiera, I-34151 Trieste, Italy
[3] Univ Paris Cite, Inst Phys Globe Paris, CNRS, F-75005 Paris, France
[4] Ist Nazl Geofis & Vulcanol, Rome, Italy
关键词
Ionospheric equivalent slab thickness; NeQuick model; Ionosphere modelling; Data assimilation; Effective scale height; TOTAL ELECTRON-CONTENT; SPORADIC-E LAYER; SEMIANNUAL VARIATIONS; SCALE HEIGHT; TOPSIDE IONOSPHERE; DENSITY; TEC; TEMPERATURE; F2-LAYER; REGION;
D O I
10.4401/ag-9026
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
The ionospheric equivalent slab thickness (r), defined as the ratio of the vertical total electron content (vTEC) to the ionospheric F2-layer electron density maximum (NmF2), is a parameter providing useful information on the shape of the vertical electron density profile. However, the use of this information is of difficult practical application in empirical ionosphere models, such as the NeQuick, because by design they do not explicitly include r as a modelling parameter. In this work, we investigated the opportunity of using measured r values to improve the empirical modelling of the ionosphere vertical electron density profile by NeQuick. Measured r values were obtained through NmF2 observations and vTEC measurements obtained between 2001 and 2019 by an ionosonde and a ground-based GNSS receiver, respectively, co-located at Rome ionospheric station (41.8 degrees N, 12.5 degrees E; Italy). NeQuick r was obtained as the ratio between modelled NmF2 and vTEC values, the latter calculated by integration of the vertical profile. As a first step, r values modelled by NeQuick were compared with corresponding values measured at Rome station to highlight diurnal, seasonal, and solar activity differences. Then, measured r values were ingested in NeQuick through a three-parameter assimilation procedure which first assimilates F2-layer peak characteristics to constrain the F2-layer anchor point, and then assimilates vTEC to optimize the F2-layer shape through the NeQuick F2-layer thickness parameter, namely B2bot. The assimilation procedure provides information on how the NeQuick B2bot has to be modified to match measured r values, and then on how the shape of the F2-layer profile has to be changed accordingly. Our results highlight that, in many cases, the NeQuick B2bot has to be increased to match observations, which has implications on the modelling of the NeQuick bottomside and topside effective scale heights.
引用
收藏
页数:19
相关论文
共 50 条
[41]   Adaptation of the NeQuick2 model for GNSS wide-area ionospheric delay correction in China and the surrounding areas [J].
Li, Wen ;
Li, Zishen ;
Wang, Ningbo ;
Liu, Ang ;
Wang, Xiaoming ;
Wang, Liang ;
Yuan, Hong .
ADVANCES IN SPACE RESEARCH, 2021, 68 (12) :4884-4897
[42]   Data ingestion and assimilation in ionospheric models [J].
Buresova, Dalia ;
Nava, Bruno ;
Galkin, Ivan ;
Angling, Matthew ;
Stankov, Stanimir M. ;
Coisson, Pierdavide .
ANNALS OF GEOPHYSICS, 2009, 52 (3-4) :235-253
[43]   Assessing GNSS ionospheric models at low latitudes: BDGIM, NeQuick-G, and Klobuchar [J].
Setti Jr, Paulo T. ;
da Silva, Crislaine Menezes ;
Alves, Daniele Barroca Marra .
GPS SOLUTIONS, 2025, 29 (01)
[44]   Performance Evaluation of the Ionospheric Models AfriTEC and NeQuick 2 at the BF01 Station in Ouagadougou Between 2013 and 2021 [J].
Guibula, Karim ;
Ouedraogo, Pouraogo ;
Kabore, Salfo ;
Ouattara, Frederic ;
Fleury, Rolland .
INTERNATIONAL JOURNAL OF GEOPHYSICS, 2025, 2025 (01)
[45]   The assessment in terms of QBO of NeQuick 2 model [J].
Sagir, Selcuk ;
Atici, Ramazan ;
Akalin, Yakup ;
Yesil, Ali .
EGYPTIAN JOURNAL OF REMOTE SENSING AND SPACE SCIENCES, 2019, 22 (01) :67-72
[46]   Climatology of the ionospheric slab thickness along the longitude of 120° E in China and its adjacent region during the solar minimum years of 2007-2009 [J].
Huang, Z. ;
Yuan, H. .
ANNALES GEOPHYSICAE, 2015, 33 (10) :1311-1319
[47]   A model assisted ionospheric electron density reconstruction method based on vertical TEC data ingestion [J].
Nava, B ;
Coïsson, P ;
Amarante, GM ;
Azpilicueta, F ;
Radicella, SM .
ANNALS OF GEOPHYSICS, 2005, 48 (02) :313-320
[48]   Seasonal variation of the total electron content, maximum electron density and equivalent slab thickness at a South-American station [J].
Mansilla, GA ;
Mosert, M ;
Ezquer, RG .
JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS, 2005, 67 (17-18) :1687-1690
[49]   Application of Classical Kalman filtering technique in assimilation of multiple data types to NeQuick model [J].
Mungufeni, Patrick ;
Migoya-Orue, Yenca ;
Matamba, Tshimangadzo Merline ;
Omondi, George .
JOURNAL OF SPACE WEATHER AND SPACE CLIMATE, 2022, 12
[50]   A new version of the NeQuick ionosphere electron density model [J].
Nava, B. ;
Coisson, P. ;
Radicella, S. M. .
JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS, 2008, 70 (15) :1856-1862