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Active vibration absorber for CSI evolutionary model: Design and experimental results

机译:CSI进化模型的主动减振器:设计和实验结果

摘要

The development of control of large flexible structures technology must include practical demonstration to aid in the understanding and characterization of controlled structures in space. To support this effort, a testbed facility was developed to study practical implementation of new control technologies under realistic conditions. The design is discussed of a second order, acceleration feedback controller which acts as an active vibration absorber. This controller provides guaranteed stability margins for collocated sensor/actuator pairs in the absence of sensor/actuator dynamics and computational time delay. The primary performance objective considered is damping augmentation of the first nine structural modes. Comparison of experimental and predicted closed loop damping is presented, including test and simulation time histories for open and closed loop cases. Although the simulation and test results are not in full agreement, robustness of this design under model uncertainty is demonstrated. The basic advantage of this second order controller design is that the stability of the controller is model independent.
机译:大型柔性结构控制技术的发展必须包括实际演示,以帮助理解和表征空间中的受控结构。为了支持这项工作,开发了一个试验台设施,以研究实际条件下新控制技术的实际实施。讨论了用作主动减振器的二阶加速度反馈控制器的设计。在没有传感器/执行器动态特性和计算时间延迟的情况下,该控制器为并置的传感器/执行器对提供了保证的稳定性裕度。考虑的主要性能目标是前九种结构模式的阻尼增强。给出了实验和预测的闭环阻尼的比较,包括开环和闭环情况的测试和模拟时间历史。尽管仿真和测试结果并不完全一致,但仍证明了该设计在模型不确定性下的鲁棒性。这种二阶控制器设计的基本优点是控制器的稳定性与模型无关。

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