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首页> 外文期刊>Journal of intelligent material systems and structures >Energy analysis of semi-passive control for an aeroelastic plate-like wing using shunted piezoelectric materials
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Energy analysis of semi-passive control for an aeroelastic plate-like wing using shunted piezoelectric materials

机译:采用并联压电材料的气弹板状机翼半被动控制的能量分析

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摘要

The use of piezoelectric materials in vibration control problems has been widely investigated over the last years. The main control techniques using piezoelectric materials are the active and passive ones. In the particular case of aeroelastic control, passive piezoelectric networks have a weak capability of improving the flutter envelope. Although active systems can achieve good control performance, the potential large amount of power required for actuation is an important issue. The synchronized switch damping techniques were developed to overcome the drawbacks of passive and active control. These nonlinear techniques increase the electromechanical conversion and enhance the shunt damping. In this article, an energy flow analysis is employed to investigate the effects of two switch damping techniques on the aeroelastic behavior of a plate-like wing in two case studies. In the first one, the energy flow analysis is presented for the base excitation condition without aerodynamic influence. The working principle of switch damping techniques and the energy return phenomenon are discussed. In the second case, the energy flow analysis is employed to discuss the aeroelastic evolution and semi-passive control effects over a range of airflow speeds.
机译:近年来,在振动控制问题中使用压电材料已得到广泛研究。使用压电材料的主要控制技术是主动和被动技术。在气动弹性控制的特定情况下,无源压电网络改善颤振包络的能力很弱。尽管有源系统可以实现良好的控制性能,但致动所​​需的大量潜在动力却是一个重要的问题。开发了同步开关阻尼技术来克服被动和主动控制的缺点。这些非线性技术增加了机电转换并增强了分流阻尼。在本文中,通过能量流分析在两个案例研究中研究了两种开关阻尼技术对板状机翼气动弹性行为的影响。在第一个中,介绍了在没有空气动力学影响的情况下针对基本激励条件的能流分析。讨论了开关阻尼技术的工作原理和能量回馈现象。在第二种情况下,利用能流分析来讨论在一定的风速范围内的气动弹性演化和半被动控制效果。

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