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首页> 外文期刊>Journal of guidance, control, and dynamics >Control System Development for Pneumatic Artificial Muscle-Driven Active Rotor Systems
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Control System Development for Pneumatic Artificial Muscle-Driven Active Rotor Systems

机译:气动人工肌肉驱动主动转子系统的控制系统开发

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An active trailing-edge flap system for helicopter rotor blades using pneumatic artificial muscles was investigated, with the goal of generating flap deflections suitable for both vibration mitigation and primary flight control. Prior work with these actuators showed that large deflections were possible under full-scale conditions. This study developed and demonstrated an inner loop feedback controller that enables the flap to track the complex waveforms required to achieve its goal. Control algorithm development began with proportional feedback, but required the addition of a dead time compensator to reduce tracking error and increase bandwidth. The dead time compensator initially had a fixed value, though this transitioned to a variable to cope with potential changes in the dead time due to changing operating conditions. In this case, the system can continuously adjust the dead time estimate from the position error and predict future tracking error using that estimate, and adjust the control action accordingly. This approach requires no system model and no a priori information about the desired command signal. As such, it is well suited to the active rotor problem. Testing of this controller on single sine waves and complex waveforms composed of a sum of the first four odd harmonics of the rotor frequency showed good tracking for all conditions.
机译:研究了使用气动人工肌肉的直升机旋翼主动后缘襟翼系统,目的是产生既适用于减振又适用于初次飞行控制的襟翼偏转。这些致动器的先前工作表明,在满量程条件下可能会产生较大的挠度。这项研究开发并演示了一个内环反馈控制器,该控制器使襟翼能够跟踪实现其目标所需的复杂波形。控制算法的开发从比例反馈开始,但是需要增加空载时间补偿器以减少跟踪误差并增加带宽。空载时间补偿器最初具有固定值,尽管此值转换为变量以应对由于工况变化而引起的空载时间的潜在变化。在这种情况下,系统可以根据位置误差连续调整停滞时间估计值,并使用该估计值预测未来的跟踪误差,并相应地调整控制动作。这种方法不需要系统模型,也不需要有关所需命令信号的先验信息。因此,它非常适合主动转子问题。在单正弦波和由转子频率的前四个奇次谐波之和组成的复杂波形上对该控制器进行的测试表明,在所有条件下均具有良好的跟踪能力。

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  • 来源
    《Journal of guidance, control, and dynamics 》 |2013年第4期| 1177-1185| 共9页
  • 作者单位

    Department of Aerospace Engineering University of Maryland, College Park, Maryland 20742;

    Department of Aerospace Engineering University of Maryland, College Park, Maryland 20742;

    Advanced Technology Division Techno-Sciences, Inc., Beltsville, Maryland 20705;

    Department of Aerospace Engineering University of Maryland, College Park, Maryland 20742;

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  • 正文语种 eng
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