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RESULTS FROM THE PROGNOSTIC ANALYSIS COMPLETED ON THE NASA EUVE SATELLITE TO MEASURE EQUIPMENT MISSION LIFE

机译:在美国宇航局欧盟卫星上完成的预后分析结果来衡量设备使命生命

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This paper addresses the research conducted at U.C. Berkeley Space Sciences Laboratory, Center for Extreme Ultra Violet Astrophysics between 1994 and 1995 on the NASA EUVE ion-orbit satellite. It includes the results from conducting a scientific analysis called a prognostic analysis completed on all satellite subsystem equipment. A prognostic analysis uses equipment analog telemetry to measure equipment remaining usable life. The analysis relates equipment transient behavior, often referred to as "cannot duplicates" in a variety of industries caused from accelerated aging to the equipment end-of-life with certainty. The analysis was confirmed by using proprietary, pattern recognition software by Lockheed Martin personnel Lockheed Martin personnel completed an exploration into the application of statistical pattern recognition methods to identify the behavior caused from accelerated aging that experts in probability reliability analysis claims cannot exist. Both visual and statistical methods were successful in detecting suspect accelerated aging and this behavior was related to equipment end of life with certainty. The long-term objective of this research was to confirm that satellite subsystem equipment failures could be predicted so that satellite subsystem and payload engineering personnel could be allocated for only the time that equipment failures were predicted to occur, lowering the cost of mission operations. This research concluded that satellite subsystem equipment remaining usable life could be measured and equipment failures could be predicted with certainty so that engineering support for mission operations could be greatly reduced.
机译:本文涉及在U.c中进行的研究。 Berkeley Space Sciences实验室,1994年至1995年间在NASA欧盟离子轨道卫星的1994年至1995年间的极端超紫色天体物理学中心。它包括进行科学分析的结果,称为所有卫星子系统设备完成的预后分析。预后分析使用设备模拟遥测来测量剩余的设备的设备。分析涉及设备瞬态行为,通常被称为“无法重复”在各种行业中引起的各种行业,令人牢固地造成的设备终生终结。通过洛克希德马丁人员洛克希德马丁人员使用专有的模式识别软件确认了分析完成了探索统计模式识别方法的探索,以确定由加速老化引起的行为,即概率可靠性分析声明的专家不能存在。视觉和统计方法都成功地检测嫌疑人加速老化,这种行为与肯定有关的设备结束。本研究的长期目标是确认可以预测卫星子系统设备故障,以便仅在预测设备故障发生的时间内分配卫星子系统和有效载荷工程人员,降低任务操作的成本。本研究得出结论,卫星子系统设备剩余的可用生命可以测量,并且可以确定地预测设备故障,以便大大减少对特派团运营的工程支持。

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