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Methods for Spacecraft Avionics Protection Against Space Radiation in the Form of Single-Event Transients

机译:单事件瞬态形式的航天器航空电子器件对空间辐射的防护方法

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This paper presents a design philosophy for protecting spacecraft avionics from the effects of single-event transients caused by high-energetic charged particles in the space environment. The design philosophy has resulted in a proven concept over the many years of actual implementation in real avionics in real space missions. Only an overview of this design philosophy is presented. The paper first addresses the science of the space environment as it relates to high-energy charged particles. It includes the derivations of important parameters in high-energy particle physics as it applies to interactions with semiconductor electronic in component integrated circuits. The paper then transitions to explore some general methodologies widely used in the industry to control the damaging effects of single-event transients caused by the space environment. The paper then shifts emphasis to the main subject of design methods and philosophies, with examples of how spacecraft avionics can be designed and built with a certain level of immunity against the possible catastrophic effects of single-event transients. These design principles are presented briefly, but with enough detail to provide a general overview.
机译:本文提出了一种设计理念,用于保护航天器航空电子设备免受空间环境中高能带电粒子引起的单事件瞬变的影响。在多年实际飞行任务中,在实际航空电子设备中的实际实施中,这种设计理念已产生了经过验证的概念。仅介绍了这种设计理念。本文首先论述了与高能带电粒子有关的空间环境科学。它包括高能粒子物理中重要参数的推导,因为它适用于与组件集成电路中的半导体电子相互作用。然后,本文过渡到探索一些在工业上广泛使用的通用方法,以控制由空间环境引起的单事件瞬态的破坏性影响。然后,本文将重点转移到设计方法和哲学的主要主题上,并举例说明如何设计和建造航天飞机航空电子设备,并在一定程度上抵抗单事件瞬变可能带来的灾难性影响。简要介绍了这些设计原理,但有足够的细节以提供一般概述。

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