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An integrated modeling and analysis methodology for precision pointing applications

机译:精密指向应用的集成建模与分析方法

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Space-based optical systems that perform tasks such as laser communications, Earth imaging, and astronomical observations require precise line-of-sight (LOS) pointing. A general approach is described for integrated modeling and analysis of these types of systems within the MATLAB/Simulink environment. The approach can be applied during all stages of program development, from early conceptual design studies to hardware implementation phases. The main objective is to predict the dynamic pointing performance subject to anticipated disturbances and noise sources. Secondary objectives include assessing the control stability, levying subsystem requirements, supporting pointing error budgets, and performing trade studies. The integrated model resides in Simulink, and several MATLAB graphical user interfaces (GUI's) allow the user to configure the model, select analysis options, run analyses, and process the results. A convenient parameter naming and storage scheme, as well as model conditioning and reduction tools and run-time enhancements, are incorporated into the framework. This enables the proposed architecture to accommodate models of realistic complexity.
机译:基于空间的光学系统,这些光学系统执行激光通信,地球成像和天文观察等任务需要精确的视线(LOS)指向。描述了一种用于在Matlab / Simulink环境中的这些类型系统的集成建模和分析的一般方法。该方法可以在项目开发的所有阶段应用,从早期概念设计研究到硬件实施阶段。主要目的是预测预期扰动和噪声源的动态指向性能。次要目标包括评估控制稳定性,征收子系统要求,支持指示错误预算,并进行贸易研究。集成模型驻留在Simulink中,以及几个MATLAB图形用户界面(GUI)允许用户配置模型,选择分析选项,运行分析并处理结果。一种方便的参数命名和存储方案,以及模型调节和减少工具以及运行时增强功能都包含在框架中。这使得建议的架构能够适应现实复杂性的模型。

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