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Space-based optical system performance evaluation with integrated modeling tools

机译:使用集成建模工具进行空基光学系统性能评估

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As the complexity of telescope systems have increased, system engineering trades related to cost and performance issues have become correspondingly more difficult. Many of the proposed space-based systems cannot be tested at the system level prior to launch and precursor technology missions are too expensive and do not fully duplicate the actual hardware. Therefore, industry is increasingly reliant upon modeling to predict end-to-end system performance from sub-system validation through laboratory testing. The increase of computational speed has enabled the development of integrated modeling tools which compliments the subsystem design process while facilitating system performance modeling. With integrated modeling, the optical design, structural dynamics, controls, disturbances, and sensor models are contained in a single environment. The challenge is to maintain computational speed and accurate computations while managing the complexity of multiple models, interfaces and hundreds of parameters. This paper discusses the issues involved with system modeling including architectural decisions, integration of subsystem models and disturbance modeling.
机译:随着望远镜系统的复杂性增加,与成本和性能问题相关的系统工程交易也相应地变得更加困难。许多建议的天基系统无法在发射前在系统级别进行测试,并且前体技术任务过于昂贵,无法完全复制实际硬件。因此,行业越来越依赖于建模来预测从子系统验证到实验室测试的端到端系统性能。计算速度的提高使得集成建模工具的开发成为可能,该工具在辅助子系统设计过程的同时,还促进了系统性能建模。通过集成建模,光学设计,结构动力学,控制,干扰和传感器模型都包含在单个环境中。挑战在于保持计算速度和准确的计算,同时管理多个模型,接口和数百个参数的复杂性。本文讨论了与系统建模有关的问题,包括体系结构决策,子系统模型的集成和干扰建模。

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