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Article

Performance Analysis of a Portable Low-Cost SDR-Based Ionosonde

by
Oleksandr Koloskov
1,2,3,*,
Anton Kashcheyev
1,
Oleksandr Bogomaz
2,4,
Andriy Sopin
2,3,
Bogdan Gavrylyuk
2,3 and
Andriy Zalizovski
2,3,5
1
Department of Physics, University of New Brunswick, Fredericton, NB E3B5A3, Canada
2
State Institution National Antarctic Scientific Center, Ministry of Education and Science of Ukraine, 01601 Kyiv, Ukraine
3
Institute of Radio Astronomy, National Academy of Sciences of Ukraine, 61002 Kharkiv, Ukraine
4
Institute of Ionosphere, 61001 Kharkiv, Ukraine
5
Space Research Centre, Polish Academy of Sciences, 00-716 Warsaw, Poland
*
Author to whom correspondence should be addressed.
Atmosphere 2023, 14(1), 159; https://doi.org/10.3390/atmos14010159
Submission received: 25 November 2022 / Revised: 4 January 2023 / Accepted: 5 January 2023 / Published: 11 January 2023
(This article belongs to the Special Issue Ionospheric Science and Ionosonde Applications)

Abstract

This work presents a software-defined radio ionosonde (ISDR) developed at the Abdus Salam International Centre for Theoretical Physics (Italy) and the Institute of Radio Astronomy (Ukraine) and installed at the Ukrainian Antarctic Station in 2017. For the first time, the results of the long-term data comparison of the ISDR with the conventional ionosonde IPS-42 produced by KEL Aerospace are presented and discussed. The matching of the ionograms obtained during the whole year of 2021, as well as a comparison of the critical frequencies and virtual heights of F, E, and Es layers manually scaled from the ionograms showed that the ISDR has a similar level of performance to IPS-42. At the same time, the ISDR is a more versatile instrument that supports a bistatic operation, provides Doppler measurements and polarization information, and has a significantly lower cost and transmission power. Different configurations of the ISDR are considered. The basic configuration allows for using the ISDR as a conventional vertical ionospheric sounder. An enhanced configuration of the ISDR allows for oblique sounding, as well as polarization information that enables the O- and X-propagation modes of the ionospheric signal to be distinguished. The enhanced passive version of the ISDR was successfully tested onboard the research vessel “Noosfera” on distances up to 1,400 km from the transmitting ISDR.
Keywords: ionosphere; ionosonde; ionogram; SDR; USRP ionosphere; ionosonde; ionogram; SDR; USRP

Share and Cite

MDPI and ACS Style

Koloskov, O.; Kashcheyev, A.; Bogomaz, O.; Sopin, A.; Gavrylyuk, B.; Zalizovski, A. Performance Analysis of a Portable Low-Cost SDR-Based Ionosonde. Atmosphere 2023, 14, 159. https://doi.org/10.3390/atmos14010159

AMA Style

Koloskov O, Kashcheyev A, Bogomaz O, Sopin A, Gavrylyuk B, Zalizovski A. Performance Analysis of a Portable Low-Cost SDR-Based Ionosonde. Atmosphere. 2023; 14(1):159. https://doi.org/10.3390/atmos14010159

Chicago/Turabian Style

Koloskov, Oleksandr, Anton Kashcheyev, Oleksandr Bogomaz, Andriy Sopin, Bogdan Gavrylyuk, and Andriy Zalizovski. 2023. "Performance Analysis of a Portable Low-Cost SDR-Based Ionosonde" Atmosphere 14, no. 1: 159. https://doi.org/10.3390/atmos14010159

APA Style

Koloskov, O., Kashcheyev, A., Bogomaz, O., Sopin, A., Gavrylyuk, B., & Zalizovski, A. (2023). Performance Analysis of a Portable Low-Cost SDR-Based Ionosonde. Atmosphere, 14(1), 159. https://doi.org/10.3390/atmos14010159

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