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A model for predicting the radiation exposure for mission planning aboard the international space station
Authors:Samy El-Jaby  Brent J Lewis  Leena Tomi
Institution:1. Royal Military College of Canada, Department of Chemistry and Chemical Engineering, 17000 Station Forces, Kingston, ON K7K7B4, Canada;2. Atomic Energy of Canada Limited, Station 51, Chalk River, ON K0J1J0, Canada;3. University of Ontario Institute of Technology, 2000 Simcoe Street North, Room ERC 4036, Oshawa, ON L1H 7K4, Canada;4. Canadian Space Agency, Operational Space Medicine Division, 6767 Route de l’Aéroport, Longueuil, QC J3Y8Y9, Canada
Abstract:The International Space Station Cosmic Radiation Exposure Model (ISSCREM) has been developed as a possible tool for use in radiation mission planning as based on operational data collected with a tissue equivalent proportional counter (TEPC) aboard the ISS since 2000. It is able to reproduce the observed trapped radiation and galactic cosmic radiation (GCR) contributions to the total dose equivalent to within ±20% and ±10%, respectively, as would be measured by the onboard TEPC at the Zvezda Service Module panel 327 (SM-327). Furthermore, when these contributions are combined, the total dose equivalent that would be measured at this location is estimated to within ±10%. The models incorporated into ISSCREM correlate the GCR dose equivalent rate to the cutoff rigidity magnetic shielding parameter and the trapped radiation dose equivalent rate to atmospheric density inside the South Atlantic Anomaly. The GCR dose equivalent rate is found to vary minimally with altitude and TEPC module location however, due to the statistics and data available, the trapped radiation model could only be developed for the TEPC located at SM-327. Evidence of the variation in trapped radiation dose with detector orientation and the East–West asymmetry were observed at this location.
Keywords:ISS  Dose equivalent  Predictive model  GCR  Trapped radiation  TEPC
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