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Active flutter suppression: non-structured and structured H design *

机译:主动抖动抑制:非结构化和结构化 H 设计 *

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In this article a comparison of two controllers for the active suppression of flutter of a flexible remotely-piloted aerial vehicle is presented. TheH∞technique is used for both, but the first relies on the standard (non-structured) approach and the second on the structured synthesis. High-fidelity models derived from finite element modeling are used to verify the performance of the obtained controllers. Reduced-order models are used for the control synthesis, which are obtained from applying a combination of balanced and modal reduction techniques on the high-fidelity models. The results show that both controllers are similar in performance and robustness, and both are capable of suppressing flutter and extending the flight envelope well beyond the open-loop flutter speed.
机译:在本文中,比较了两种用于主动抑制远程遥控飞行器抖动的控制器。 H∞技术同时用​​于这两种技术,但是第一种依赖于标准(非结构化)方法,第二种依赖于结构化综合。从有限元建模派生的高保真模型用于验证所获得控制器的性能。降阶模型用于控制综合,它是通过在高保真模型上应用平衡和模态降阶技术的组合而获得的。结果表明,这两种控制器在性能和鲁棒性上都相似,并且都能够抑制颤动并将飞行范围扩展到远远超过开环颤动速度。

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