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Statistical approach to systems engineering for the Thirty MeterTelescope

机译:30米 r n望远镜的系统工程统计方法

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Core components of systems engineering are the proper understanding of the top level system requirements, their allocation to the subsystems, and then the verification of the system built against these requirements. System performance, ultimately relevant to all three of these components, is inherently a statistical variable, depending on random processes influencing even the otherwise deterministic components of performance, through their input conditions. The paper outlines the Stochastic Framework facilitating both the definition and estimate of system performance in a consistent way. The environmental constraints at the site of the observatory are significant design drivers and can be derived from the Stochastic Framework, as well. The paper explains the control architecture capable of achieving the overall system performance as well as its allocation to subsystems. An accounting for the error and disturbance sources, as well as their dependence on environmental and operational parameters is included. The most current simulations results validating the architecture and providing early verification of the preliminary TMT design are also summarized.
机译:系统工程的核心组件是对顶层系统需求的正确理解,对子系统的分配,然后根据这些需求对构建的系统进行验证。最终与所有这三个组件相关的系统性能本质上是一个统计变量,取决于随机过程是否会通过其输入条件影响性能的其他确定性组件。本文概述了随机框架,以一致的方式促进了系统性能的定义和估计。天文台所在地的环境限制是重要的设计驱动力,也可以从随机框架中得出。本文解释了能够实现整体系统性能的控制体系结构及其对子系统的分配。包括对误差和干扰源及其对环境和操作参数的依赖性的说明。还总结了最新的仿真结果,这些结果验证了体系结构并提供了TMT初步设计的早期验证。

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