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Internal charging: a preliminary environmental specification for satellites

机译:内部充电:卫星的初步环境规格

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摘要

Internal charging has been indicated as the cause of many satellite anomalies. In some cases, it has been argued that internal charging has caused satellite system failures. It may be possible to predict the occurrence of an internal charging threat in the future but that does not remove the necessity to know what the environmental threat may be. The existence, for many years now, of energetic electron and internal charging measurements in the inner magnetosphere provides the ability to identify the threat levels and generate internal charging specifications. The specifications must embody the worst-case environments that can be expected from magnetic storms and extreme solar/interplanetary conditions. Internal-charging environment specifications are needed by satellite manufacturers for setting design requirements for their systems. The specifications are also required for defining the worst-case energetic electron flux levels and total fluence levels from events. These are used for electron beam testing to verify that critical systems are immune to internal charging, for performing tests on subsystems, and for use in anomaly investigation programs. Data from the GOES, LANL, and CRRES satellites were used to develop preliminary internal-charging environment specifications for some commonly used orbits such as geosynchronous and Molniya or high earth orbits (HEO), and they are discussed. A specification is also given for a highly elliptical equatorial orbit that is used for lunar-transfer orbital maneuvers. The preliminary environments were used to estimate the shielding required to reduce worst-case electron fluxes to safe levels for these orbits.
机译:内部充电已被指示为许多卫星异常的原因。在某些情况下,有人争辩说内部充电已导致卫星系统故障。将来可能会预测内部充电威胁的发生,但这并不会消除对环境威胁可能构成的了解。多年来,内部磁层中高能电子和内部电荷测量的存在提供了识别威胁级别并生成内部电荷规范的能力。规范必须体现最恶劣的环境,这可能是电磁风暴和极端的太阳/行星际条件所预期的。卫星制造商需要内部充电环境规范来设置其系统的设计要求。定义事件的最坏情况的高能电子通量水平和总通量水平也需要规范。这些用于电子束测试,以验证关键系统不受内部充电的影响,在子系统上执行测试以及用于异常调查程序。来自GOES,LANL和CRRES卫星的数据被用于为一些常用轨道(如地球同步轨道和Molniya轨道或高地球轨道(HEO))开发初步的内部充电环境规范,并对其进行了讨论。还给出了用于月球转移轨道操纵的高度椭圆赤道轨道的规范。初步环境用于估算将这些轨道的最坏情况的电子通量降低到安全水平所需的屏蔽。

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