Estimation and analysis of the influence of ionizing radiation on the operation of nanosatellite onboard radio electronic equipment

The paper presents the results of a calculation aimed to study the influence of ionizing, bremsstrahlung radiation on the operation of a nanosatellite obtained during the implementation of the project 0777-2020-0018 in 2020. A comparative analysis of the results of calculating the specific ionizatio...

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Main Authors: S. V. Tsaplin, S. A. Bolychev
Format: Article
Language:English
Published: Samara National Research University 2021-12-01
Series:Вестник Самарского университета: Аэрокосмическая техника, технологии и машиностроение
Subjects:
Online Access:https://journals.ssau.ru/vestnik/article/viewFile/9896/8713
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author S. V. Tsaplin
S. A. Bolychev
author_facet S. V. Tsaplin
S. A. Bolychev
author_sort S. V. Tsaplin
collection DOAJ
description The paper presents the results of a calculation aimed to study the influence of ionizing, bremsstrahlung radiation on the operation of a nanosatellite obtained during the implementation of the project 0777-2020-0018 in 2020. A comparative analysis of the results of calculating the specific ionization and radiation energy losses of protons (from 0.1 to 400 MeV) and electrons (from 0.04 to 7 MeV), as well as their path lengths in aluminum according to the formulas of various authors and the database of materials of the National Institute of Standards and Technologies is presented. Based on the analysis results, the annual dose in the aluminum structure of the SamSat ION nanosatellite in a circular sun-synchronous orbit (SSO) is calculated. All calculations are based on the data of the energy spectra of protons and electrons of the SSO given in the Information system Spenvis of the European Space Agency. The results of calculating the integral fluxes in aluminum under the action of protons and electrons of a circular SSO for different thicknesses are obtained, and the fraction of passed particles is shown in the approximation of a single-layer stack. The radiation resistance of the electronic elements ISL70321SEH, ISL73321SEH and Virtex-4QV, Virtex-5QV included in the SamSat ION avionics and its ability to operate during a year was assessed.
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spelling doaj.art-0e4add05d8cb4886bc116d20729ef5bd2023-03-14T06:55:12ZengSamara National Research UniversityВестник Самарского университета: Аэрокосмическая техника, технологии и машиностроение2542-04532541-75332021-12-01203779610.18287/2541-7533-2021-20-3-77-968504Estimation and analysis of the influence of ionizing radiation on the operation of nanosatellite onboard radio electronic equipmentS. V. Tsaplin0https://orcid.org/0000-0002-1689-0744S. A. Bolychev1https://orcid.org/0000-0002-9471-6282Samara National Research UniversitySamara National Research UniversityThe paper presents the results of a calculation aimed to study the influence of ionizing, bremsstrahlung radiation on the operation of a nanosatellite obtained during the implementation of the project 0777-2020-0018 in 2020. A comparative analysis of the results of calculating the specific ionization and radiation energy losses of protons (from 0.1 to 400 MeV) and electrons (from 0.04 to 7 MeV), as well as their path lengths in aluminum according to the formulas of various authors and the database of materials of the National Institute of Standards and Technologies is presented. Based on the analysis results, the annual dose in the aluminum structure of the SamSat ION nanosatellite in a circular sun-synchronous orbit (SSO) is calculated. All calculations are based on the data of the energy spectra of protons and electrons of the SSO given in the Information system Spenvis of the European Space Agency. The results of calculating the integral fluxes in aluminum under the action of protons and electrons of a circular SSO for different thicknesses are obtained, and the fraction of passed particles is shown in the approximation of a single-layer stack. The radiation resistance of the electronic elements ISL70321SEH, ISL73321SEH and Virtex-4QV, Virtex-5QV included in the SamSat ION avionics and its ability to operate during a year was assessed.https://journals.ssau.ru/vestnik/article/viewFile/9896/8713ionizationradiation lossesbremsstrahlungabsorbedequivalent doseradiation belts of the earthradiation protectionradio electronic elementsonboard equipmentsmall spacecraft
spellingShingle S. V. Tsaplin
S. A. Bolychev
Estimation and analysis of the influence of ionizing radiation on the operation of nanosatellite onboard radio electronic equipment
Вестник Самарского университета: Аэрокосмическая техника, технологии и машиностроение
ionization
radiation losses
bremsstrahlung
absorbed
equivalent dose
radiation belts of the earth
radiation protection
radio electronic elements
onboard equipment
small spacecraft
title Estimation and analysis of the influence of ionizing radiation on the operation of nanosatellite onboard radio electronic equipment
title_full Estimation and analysis of the influence of ionizing radiation on the operation of nanosatellite onboard radio electronic equipment
title_fullStr Estimation and analysis of the influence of ionizing radiation on the operation of nanosatellite onboard radio electronic equipment
title_full_unstemmed Estimation and analysis of the influence of ionizing radiation on the operation of nanosatellite onboard radio electronic equipment
title_short Estimation and analysis of the influence of ionizing radiation on the operation of nanosatellite onboard radio electronic equipment
title_sort estimation and analysis of the influence of ionizing radiation on the operation of nanosatellite onboard radio electronic equipment
topic ionization
radiation losses
bremsstrahlung
absorbed
equivalent dose
radiation belts of the earth
radiation protection
radio electronic elements
onboard equipment
small spacecraft
url https://journals.ssau.ru/vestnik/article/viewFile/9896/8713
work_keys_str_mv AT svtsaplin estimationandanalysisoftheinfluenceofionizingradiationontheoperationofnanosatelliteonboardradioelectronicequipment
AT sabolychev estimationandanalysisoftheinfluenceofionizingradiationontheoperationofnanosatelliteonboardradioelectronicequipment