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Flutter suppression digital control law design and testing for the AFW wind tunnel model

机译:AFW风洞模型颤振抑制数字控制律设计与试验。

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摘要

The design of a control law for simultaneously suppressing the symmetric and antisymmetric flutter modes of a sting mounted fixed-in-roll aeroelastic wind-tunnel model is described. The flutter suppression control law was designed using linear quadratic Gaussian theory, and it also involved control law order reduction, a gain root-locus study, and use of previous experimental results. A 23 percent increase in the open-loop flutter dynamic pressure was demonstrated during the wind-tunnel test. Rapid roll maneuvers at 11 percent above the symmetric flutter boundary were also performed when the model was in a free-to-roll configuration.
机译:描述了一种控制律的设计,该控制律可同时抑制固定在车架上的气动弹性风洞模型的对称和非对称颤振模式。颤振抑制控制律是使用线性二次高斯理论设计的,还涉及控制律阶数减少,增益根轨迹研究以及先前实验结果的使用。风洞测试期间,开环颤振动压力增加了23%。当模型处于自由滚动配置时,还执行了高于对称颤动边界11%的快速滚动操作。

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  • 作者

    Mukhopadhyay, Vivek;

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  • 年度 1994
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