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- W4317693800 abstract "Multiple missions are being planned for lunar in-situ resource development initially requiring autonomous complex software-hardware system operations followed by a sustainable, long-term astronaut presence entailing the development of a lunar base camp. Radiation exposure from solar particle events (SPEs) presents a significant hazardous concern. In mitigating the radiation risk to autonomous robotic systems (ARS) including orbiters, satellite probes, landers, rovers, and other equipment at the lunar surface, component parts in the hardware are categorized according to their respective Radiation Design Margin (RDM). Ratio of the part failure level to the part radiation environment is the key activity of the missions’ hardness assurance program. Reliability of multi-state systems with multi-state components indicates the probability that system capacity meets a required demand when the system components and demand follows a multi-state behavior. Space radiation demand placed on ARS appears as an impending/ impacting flux for which comparative measureable analysis of various technologies applied may express the degree of reliability per ASR structural integrity and mission function. The aim of this paper is showcase multiple innovative technologies on radiation tolerance in the engineering designs of lunar spacecraft/ ARS. Keywords: radiation hardness, radiation shields, autonomous robotic systems" @default.
- W4317693800 created "2023-01-22" @default.
- W4317693800 creator A5047441924 @default.
- W4317693800 date "2023-01-19" @default.
- W4317693800 modified "2023-10-14" @default.
- W4317693800 title "Radiation hardening of spacecraft and other autonomous robotic systems: Lunar safety v2.0" @default.
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- W4317693800 doi "https://doi.org/10.2514/6.2023-1839" @default.
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