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Integrated Controls-Structures Design Methodology: Redesign of an Evolutionary Test Structure

机译:集成控件-结构设计方法:进化测试结构的重新设计

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摘要

An optimization-based integrated controls-structures design methodology for a class of flexible space structures is described, and the phase-0 Controls-Structures-Integration evolutionary model, a laboratory testbed at NASA Langley, is redesigned using this integrated design methodology. The integrated controls-structures design is posed as a nonlinear programming problem to minimize the control effort required to maintain a specified line-of-sight pointing performance, under persistent white noise disturbance. Static and dynamic dissipative control strategies are employed for feedback control, and parameters of these controllers are considered as the control design variables. Sizes of strut elements in various sections of the CEM are used as the structural design variables. Design guides for the struts are developed and employed in the integrated design process, to ensure that the redesigned structure can be effectively fabricated. The superiority of the integrated design methodology over the conventional design approach is demonstrated analytically by observing a significant reduction in the average control power needed to maintain specified pointing performance with the integrated design approach.
机译:描述了用于一类柔性空间结构的基于优化的集成控制结构设计方法,并使用该集成设计方法重新设计了NASA Langley实验室的阶段0控件-结构-集成演化模型。集成的控制结构设计被提出为非线性编程问题,以在持久的白噪声干扰下最大程度地降低维持指定视线指向性能所需的控制工作量。静态和动态耗散控制策略用于反馈控制,这些控制器的参数被视为控制设计变量。 CEM各个部分中的撑杆元素的大小用作结构设计变量。支柱的设计指南已制定并在集成设计过程中采用,以确保可以有效地制造重新设计的结构。通过观察到使用集成设计方法保持指定的指针性能所需的平均控制功率显着降低,可以证明集成设计方法相对于常规设计方法的优越性。

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