"Mitigation of Ionospheric Threats to GNSS: an Appraisal of the Scientific and ..." ed. by Riccardo Notarpietro, et al.

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"Mitigation of Ionospheric Threats to GNSS: an Appraisal of the Scientific and ..." ed. by Riccardo Notarpietro, et al.

"Mitigation of Ionospheric Threats to GNSS: an Appraisal of the Scientific and Technological Outputs of the TRANSMIT Project" ed. by Riccardo Notarpietro, Fabio Dovis, Giorgiana De Franceschi and Marcio Aquino
TRANSMIT 2014 Workshop Appraisal of Scientific and Technological Output, Torino (Italy) on February 2014
InTAvE | 2014 | ISBN: 9535116428 9789535116424 | 233 pages | PDF | 61 MB

This volume is dedicated to TRANSMIT (Training Research and Applications Network to Support the Mitigation of Ionospheric Threats). It provided a coordinated program of academic and industrial training, focused on atmospheric phenomena that can significantly impair a wide range of systems and applications that are at the core of several activities embedded in our daily life.

Main aim of the project has been to develop a web based prototype demonstrator aiming to showcase the project research outcomes in a user friendly manner, through a series of model outputs and tools that could serve as the blueprint for a future service to assist users and industry to mitigate the effects of ionospheric threats to GNSS.

1 Data Management Strategy for GNSS Services — The TRANSMIT Project Case
2 The Concept of the TRANSMIT Prototype - Network Based Service for Mitigation of Ionospheric Threats to GNSS
3 Kalman Filter Based PLL Robust Against Ionospheric Scintillation
4 Towards Analyzing the Effect of Interference Monitoring in GNSS Scintillation
5 Computation of Scintillation Indices for the Galileo El Signals Using a Software Receiver
6 Using Ordinary Kriging for the Creation of Scintillation Maps
7 Challenges of Real-Time Monitoring of Ionospheric Perturbations and TEC Fluctuations with GPS Single Station
8 The Reliability Evaluation of GNSS Observations in the Presence of Ionospheric Perturbations
9 A Filtering Method Developed to Improve GNSS Receiver Data Quality in the CALIBRA Project
10 B-Spline Model of Ionospheric Scintillation For - High Latitude Using In-situ Satellite Data
11 Regional Ionosphere Mapping with Kriging and B-spline Methods
12 Statistical Case Studies of High and Low Latitude Ionospheric Scintillations
13 Performance Analysis of Empirical Ionosphere Models by Comparison with CODE Vertical TEC Maps
14 Comparison between the NeQuick Model and VTEC Estimation by GPS Measurements over Egypt
15 Multiresolution Tomography of Ionospheric Electron Density
16 ANIMo — A New Ionospheric Model. Ionospheric Modeling for Ionospheric Imaging and Forecasting Purposes
17 Implementation of Ionospheric Asymmetry Index in TRANSMIT Prototype
with TOC BookMarkLinks