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Receptance-Based Active Aeroelastic Control with Embedded Control Surfaces Having Actuator Dynamics

机译:具有接收器动力学的嵌入式控制面基于接收的主动气动弹性控制

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摘要

To implement active aeroelastic control, control surfaces on a given wing configuration are moved using actuators having their own dynamic characteristics. The inclusion of actuator dynamics leads to the coupling of aeroelastic and actuator modes, and may result in instability in the closed-loop coupled aeroservoelastic system. During the design phase, various types of actuators may be considered, and hence, the stability and performance of the coupled system needs to be evaluated. In this research, a simultaneous control for aeroelastic and actuator poles is developed, which allows for the desired pole placement in a coupled aeroservoelastic system. This enables flutter boundary extension and suppression of flutter instabilities. The design of the controller is based on the method of receptances and requires the transfer functions associated with the aeroelastic structure and the actuators. This approach also allows the partial control of some selected aeroelastic modes without influencing the actuator modes, which ensures the stability of a coupled aeroservoelastic system irrespective of the selected actuator model. Different wing models having multiple control surfaces have been considered in the simulation. By using the associated numerical receptances, several examples have also been presented to demonstrate the solution strategy and performance of the controller.
机译:为了实现主动的气动弹性控制,使用具有其自身动态特性的致动器来移动给定机翼配置上的控制表面。包含致动器动力学会导致气动弹性模式和致动器模式的耦合,并且可能导致闭环耦合的气动弹性系统的不稳定性。在设计阶段,可能会考虑各种类型的执行器,因此,需要评估耦合系统的稳定性和性能。在这项研究中,开发了一种同时控制气动弹性杆和执行器杆的方法,它允许在耦合的气动弹性系统中放置所需的杆。这使得抖动边界扩展并抑制了抖动不稳定性。控制器的设计基于接收方法,并且需要与气动弹性结构和执行器相关的传递函数。这种方法还允许在不影响致动器模式的情况下对某些选定的空气弹性模式进行部分控制,这确保了与选定的致动器模型无关的耦合的航空弹性系统的稳定性。在仿真中已经考虑了具有多个控制面的不同机翼模型。通过使用相关的数值接受,还提供了几个示例来演示控制器的解决方案策略和性能。

著录项

  • 来源
    《Journal of Aircraft》 |2016年第3期|830-845|共16页
  • 作者单位

    Miami Univ, Oxford, OH 45056 USA;

    Miami Univ, Oxford, OH 45056 USA;

    US Air Force Res Lab, Multidisciplinary Sci & Technol Ctr, Wright Patterson AFB, OH 45433 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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