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Automated Derivation and Verification of Navigation Requirements for On-orbit Rendezvous

机译:轨道交会的导航要求的自动推导和验证

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Due to the complexity and inter-dependence of a guidance, navigation, and control (GN&C) system, the process of converting top level system requirements into low level navigation requirements has traditionally been an ad-hoc art relying on engineering judgement, experience, and rough calculations. In addition, requirements are generally formulated when numerous aspects of the mission that directly impact the navigation system are still in flux. As a result, deriving and validating navigation requirements for a specific application, particularly for on-orbit rendezvous and docking missions, can become an iterative and laborious task with subjective results. The objective of this paper is to develop a simple, yet rigorous, method for deriving and validating navigation requirements and identify potential sensor suites that satisfy those navigation requirements at the lowest cost. By combining and applying fundamental principles commonly accepted with Monte Carlo analysis, linear covariance analysis, and sensitivity analysis, a fast, practical, and reliable methodology for deriving and validating navigation requirements emerges that also identifies the optimal sensor suite to fulfill those requirements. This systematic and objective approach for deriving navigation requirements can accommodate updates and modifications as the system design solidifies and naturally scales to handle multiple mission scenarios if needed.
机译:由于制导,导航和控制(GN&C)系统的复杂性和相互依存性,将顶级系统需求转换为低级导航需求的过程传统上一直是依赖工程判断,经验和技巧的临时技术。粗略的计算。另外,当任务的许多直接影响导航系统的方面仍在变化中时,通常会提出要求。结果,针对特定应用(尤其是针对在轨交会和对接任务)的派生和验证导航要求可能会变成一项具有主观结果的迭代且费力的任务。本文的目的是开发一种简单而严谨的方法来推导和验证导航要求,并确定以最低成本满足这些导航要求的潜在传感器套件。通过结合并应用蒙特卡洛分析,线性协方差分析和灵敏度分析通常接受的基本原理,出现了一种快速,实用和可靠的方法来推导和验证导航要求,该方法还确定了满足这些要求的最佳传感器套件。随着系统设计的巩固和必要时可以自然扩展以处理多种任务场景,这种用于得出导航要求的系统,客观的方法可以适应更新和修改。

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