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Multifunction tests of a frequency domain based flutter suppression system

机译:基于频域的抖动抑制系统的多功能测试

摘要

The process is described of analysis, design, digital implementation, and subsonic testing of an active control flutter suppression system for a full span, free-to-roll wind tunnel model of an advanced fighter concept. The design technique uses a frequency domain representation of the plant and used optimization techniques to generate a robust multi input/multi output controller. During testing in a fixed-in-roll configuration, simultaneous suppression of both symmetric and antisymmetric flutter was successfully shown. For a free-to-roll configuration, symmetric flutter was suppressed to the limit of the tunnel test envelope. During aggressive rolling maneuvers above the open-loop flutter boundary, simultaneous flutter suppression and maneuver load control were demonstrated. Finally, the flutter damping controller was reoptimized overnight during the test using combined experimental and analytical frequency domain data, resulting in improved stability robustness.
机译:描述了该过程的分析,设计,数字实现以及用于先进战斗机概念的全跨度自由滚动风洞模型的主动控制颤振抑制系统的亚音速测试。该设计技术使用工厂的频域表示,并使用优化技术来生成可靠的多输入/多输出控制器。在以固定式配置进行的测试过程中,成功地显示出同时抑制对称和反对称颤动。对于自由滚动配置,对称颤动被抑制到隧道测试范围的极限。在开环颤振边界以上进行激进的滚动演习期间,演示了同时颤振抑制和机动负荷控制。最后,使用组合的实验和分析频域数据,在测试期间通宵调整了颤振阻尼控制器,从而提高了稳定性。

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