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首页> 外文期刊>Journal of intelligent material systems and structures >Development of the Smart Spring for Active Vibration Control of Helicopter Blades
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Development of the Smart Spring for Active Vibration Control of Helicopter Blades

机译:用于直升机叶片主动振动控制的智能弹簧的开发

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摘要

Significant structural vibration is an undesirable characteristic in helicopter flight that leads to structural fatigue, poor ride quality for passengers and high acoustic signature for the vehicle. Previous Individual Blade Control (IBC) techniques based on piezoelectric actuator schemes to reduce these effects have been hindered b' electromechanical limitations of piezoelectric actuators. The Smart Spring is an active tunable vibration absorber using the IBC approach to adaptively alter the "structural impedance" at the blade root. In the paper, a mathematical model was developed to determine the response of the absorber under harmonic excitation. An adaptive notch algorithm using a DSP platform was developed to implement vibration control. Reference signal synthesis techniques were used to automatically track the shift in the fundamental vibratory frequency due to variations in flight conditions. Experiments using a mechanical shaker and wind tunnel tests conducted on the proof-of-concept hardware achieved significant vibration suppression at harmonic peaks. Investigation verified the capability of the Smart Spring to suppress multiple harmonic components in rotor vibration through active impedance control.
机译:严重的结构振动是直升机飞行中不希望有的特征,它会导致结构疲劳,乘客乘坐质量差以及车辆的高声学特征。以前基于压电致动器方案来减少这些影响的单个叶片控制(IBC)技术已经阻碍了压电致动器的机电限制。智能弹簧是一种主动可调振动吸收器,使用IBC方法来自适应地更改叶片根部的“结构阻抗”。在本文中,建立了一个数学模型来确定吸收器在谐波激励下的响应。开发了使用DSP平台的自适应陷波算法来实现振动控制。参考信号合成技术用于自动跟踪由于飞行条件的变化而引起的基本振动频率的变化。在概念验证硬件上使用机械振动器和风洞测试进行的实验在谐波峰值处实现了显着的振动抑制。调查证实了智能弹簧通过主动阻抗控制抑制转子振动中多个谐波分量的能力。

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