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An Integrated Technology of Ionospheric Backscatter Detection and Oblique Detection
- Source :
- IEEE Access, Vol 9, Pp 129718-129727 (2021)
- Publication Year :
- 2021
- Publisher :
- IEEE, 2021.
-
Abstract
- Traditional single ground-based ionospheric detection methods often fail to obtain accurately ionospheric parameter information due to the measurement errors of detection systems and inverse algorithms. With the development of high frequency communication and radar sounding techniques, the ionospheric combined detection technology with multi-means is the most effective way to obtain the more accurate ionospheric characteristics. In this study, combined with ionospheric backscatter detection and oblique detection methods, an integrated ionospheric detection technology (quasi-backscatter detection technology) is proposed. The ionospheric parameters are obtained based on the minimum mean square error criterion and global searching method. The experimental results show that the inversion accuracy of ionospheric parameters is significantly improved by using quasi-backscatter detection system(42.3°N, GeoM). In addition, we simulate the propagation characteristics of the quasi-backscatter detection system by using ray tracing technique. And the variation characteristics between the propagation mode (and the propagation energy) and the angle of the transmitting-receiving beam are obtained.
- Subjects :
- Observational error
Minimum mean square error
General Computer Science
Backscatter
Computer science
ionospheric detection ionogram
Acoustics
General Engineering
quasi-backscatter detection
side-scatter
law.invention
Physics::Geophysics
TK1-9971
Depth sounding
law
Physics::Space Physics
General Materials Science
Ray tracing (graphics)
Electrical engineering. Electronics. Nuclear engineering
Electrical and Electronic Engineering
Ionosphere
Radar
Energy (signal processing)
Subjects
Details
- Language :
- English
- ISSN :
- 21693536
- Volume :
- 9
- Database :
- OpenAIRE
- Journal :
- IEEE Access
- Accession number :
- edsair.doi.dedup.....9068e7c71b7c89916b2b4d72b13a42c9