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引用次数: 7

摘要

美国联邦航空管理局(Federal Aviation Administration)已经开始了一项历史性的任务,即实现国家航空运输系统的现代化,并显著改善其状况。一种使用全球定位系统(GPS)来确定飞机导航信息的系统被称为广域增强系统(WAAS)。本文描述了一种候选WAAS系统体系结构的可靠性评估。本研究的一个独特方面是考虑了一个候选系统的建模和解决方案,该系统允许一种新的冷节约方案。冷备是一种WAAS通信卫星,在预定数量的轨道卫星故障发生后,在一些随机的制造时间发生后,制造并发射。由于这些卫星是具有冗余组件的复杂系统,故障率随着威布尔失效时间分布而增加。此外,冷备卫星的建立时间是威布尔的,在发射时被认为是一个良好的新系统,故障率不断增加,故障时间分布也是威布尔的。该系统的可靠性模型是非马尔可夫的,因为需要三个不同的系统时钟:轨道卫星的故障时间、冷备用卫星的构建时间和发射备用卫星的故障时间。采用一种强大的动态故障树建模方法和蒙特卡罗重要采样仿真技术,对某10年任务的可靠性进行了预测。
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A novel solution-technique applied to a novel WAAS architecture
The Federal Aviation Administration has embarked on an historic task of modernizing and significantly improving the national air transportation system. One system that uses the Global Positioning System (GPS) to determine aircraft navigational information is called the Wide Area Augmentation System (WAAS). This paper describes a reliability assessment of one candidate system architecture for the WAAS. A unique aspect of this study regards the modeling and solution of a candidate system that allows a novel cold sparing scheme. The cold spare is a WAAS communications satellite that is fabricated and launched after a predetermined number of orbiting satellite failures have occurred and after some stochastic fabrication time transpires. Because these satellites are complex systems with redundant components, they exhibit an increasing failure rate with a Weibull time to failure distribution. Moreover, the cold spare satellite build-time is Weibull and upon launch is considered to be a good-as-new system with an increasing failure rate and a Weibull time to failure distribution as well. The reliability model for this system is nonMarkovian because three distinct system clocks are required: the time to failure of the orbiting satellites, the build time for the cold spare, and the time to failure for the launched spare satellite. A powerful dynamic fault tree modeling notation and Monte Carlo simulation technique with importance sampling are shown to arrive at a reliability prediction for a 10 year mission.
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