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Semi-active damping strategy for beams system with pneumatically controlled granular structure

机译:气动控制颗粒结构梁系统的半主动阻尼策略

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The paper deals with a control method for semi-active damping of a double beam system with a smart granular structure placed in a thin silicone envelope. The damping properties of the system are controlled pneumatically, by subjecting the granular material to underpressure at particular moments. A mathematical model of the layered beam with a granular damping structure is represented by the two degrees of freedom, modified Kelvin-Voigt model of two masses, a spring with controllable stiffness, and a viscous damper with a variable damping coefficient. The optimal control problem is posed, using the concept of switching of the parameters to increase the efficiency of suppressing the displacement's amplitude. The resulting control strategy was verified experimentally for free vibrations of a cantilever system. The research proved that the appropriate, periodic switching of the properties of the considered structure enables reducing the vibration more effectively than if the material is treated passively.
机译:本文研究了一种控制方法,该方法用于将双主动梁系统的半主动阻尼与智能颗粒结构放置在薄硅胶外壳中。通过在特定时刻使粒状材料承受负压,可以气动控制系统的阻尼特性。具有颗粒阻尼结构的分层梁的数学模型由两个自由度,两个质量的改进的Kelvin-Voigt模型,具有可控制的刚度的弹簧以及具有可变阻尼系数的粘性阻尼器表示。使用参数切换的概念来提出最优控制问题,以提高抑制位移幅度的效率。通过实验验证了悬臂系统自由振动的控制策略。研究证明,与被动处理材料相比,适当地,周期性地切换所考虑结构的性能可以更有效地减少振动。

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