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Radiation Effects on Spacecraft Aircraft

机译:航天器和飞机上的辐射效应

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Satellite systems are vulnerable to Space Weather through its influence on energetic charged particle and plasma populations, which produce a variety of effects, including total dose, lattice displacement damage, single event effects (SEE), noise in sensors and electrostatic charging. In addition aircraft electronics and aircrew are subjected to atmospheric secondary radiation produced by cosmic rays and solar particle events. European Union legislation requires the control of aircrew exposure, while the decreasing feature size of modern microelectronics is leading to increased vulnerability to SEE. Such effects are also starting to afflict sea-level systems. Examples of all the above effects are given from observed spacecraft anomalies or on-board dosimetry. These demonstrate the need for improved monitoring, understanding and prediction accuracy for Space Weather.
机译:卫星系统通过其对高能电荷粒子和血浆种群的影响而易受空间天气,这产生了各种效果,包括总剂量,晶格排量损坏,单事件效应(参见),传感器噪声和静电充电。此外,通过宇宙射线和太阳粒子事件产生的航空器电子和空气螺丝。欧洲联盟立法需要控制录像机,而现代微电子学的减少特征规模导致易受伤害的脆弱性。这些效果也开始折磨海平体系。所有上述效果的实例由观察到的航天器异常或板载剂量法给出。这些证明需要改进空间天气的监测,理解和预测准确性。

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