Parametric evaluation of the SEE rate on the SEU and SEL monitors aboard the Alphasat using the IRPP model

Calculating Single Event Effect (SEE) rates is essential to ensure space mission reliability. Standard methods rely on ground-data which is not fully representative of the space radiation environment. In this paper, we evaluate these methods using SEE data collected during 5.5 years from the Single...

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Veröffentlicht in:IEEE transactions on nuclear science 2023-08, Vol.70 (8), p.1-1
Hauptverfasser: Pinto, M., Poivey, C., Gupta, V., Pesce, A., Poizat, M., Vuolo, M., Evans, H.
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container_title IEEE transactions on nuclear science
container_volume 70
creator Pinto, M.
Poivey, C.
Gupta, V.
Pesce, A.
Poizat, M.
Vuolo, M.
Evans, H.
description Calculating Single Event Effect (SEE) rates is essential to ensure space mission reliability. Standard methods rely on ground-data which is not fully representative of the space radiation environment. In this paper, we evaluate these methods using SEE data collected during 5.5 years from the Single Event Upset and Single Event Latch-up Monitors aboard the Alphasat spacecraft in Geostationary orbit.
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source IEEE Electronic Library (IEL)
subjects Alphasat
CTTB
Extraterrestrial radiation
Galactic Cosmic Rays
Geostationary orbit
Geosynchronous orbits
Ionization
Latch-up
Monitoring
Monitors
Parametric statistics
Protons
Radiation
Radiation Effects
SEE Rate
Sensitivity
Single Event Effects
Single event upsets
Space missions
Space vehicles
Spacecraft
SRAM
title Parametric evaluation of the SEE rate on the SEU and SEL monitors aboard the Alphasat using the IRPP model
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