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首页> 外文期刊>Journal of intelligent material systems and structures >Aeroelastic control of non-rotating and rotating wings using the dynamic stiffness modulation principle via piezoelectric actuators
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Aeroelastic control of non-rotating and rotating wings using the dynamic stiffness modulation principle via piezoelectric actuators

机译:通过压电致动器利用动态刚度调制原理对非旋转和旋转机翼进行气动弹性控制

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摘要

Carleton University's Rotorcraft Research Group is working on the development of an active rotor control system that incorporates a mechanism for helicopter blade pitch dynamic stiffness modulation at the root, the Active Pitch Link. This system overcomes stroke limitations of smart material and attains superior performance for helicopter rotor-induced vibration reduction. The system was tested at the whirl tower facility and this article reports the achievements obtained with a dynamically similar hinged rotor blade model. Up to 100% reduction in the transmitted loads occurred at the target 2/rev frequency when the blade was excited by a transversal jet to mimic the asymmetric flow of the helicopter rotor in forward flight. An open-loop control algorithm optimized to a target higher-harmonic frequency of the rotor also minimized the impact on the rotor fundamental cyclic control frequency at 1/rev. In another experiment at University of SAo Paulo, semi-passive control techniques using shunted piezoelectric materials were investigated for the aeroelastic control of fixed wings. Flutter oscillations of a typical section were controlled out over a range of airflow speeds. Finally, the similarity between both control techniques is discussed and recognized that they are based on a dynamic stiffness modulation control principle.
机译:卡尔顿大学的旋翼飞机研究小组正在研究一种主动旋翼控制系统,该系统在根部结合了一种用于调节直升机桨距动态刚度的机构,即主动俯仰连杆。该系统克服了智能材料的行程限制,并在降低直升机旋翼引起的振动方面获得了卓越的性能。该系统在旋风塔设施上进行了测试,本文报告了使用动态相似的铰接转子叶片模型获得的成就。当叶片被横向射流激发以模仿直升飞机中直升机旋翼的不对称流动时,在目标2 / rev频率上传输的负载最多降低100%。优化的转子目标高谐波频率的开环控制算法也将对转子基本周期控制频率1 / rev的影响降至最低。在圣保罗大学的另一项实验中,研究了使用分流压电材料的半被动控制技术对固定翼的气动弹性控制。在气流速度范围内,可以控制典型部分的颤动振荡。最后,讨论并认识到这两种控制技术之间的相似性,它们基于动态刚度调制控制原理。

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