A novel 3-DOF active vibration isolation method for TBM’s laser target

Jinlong Hu, Zhe Xie, Yang Liu, Guoli Zhu
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Abstract

In the process of full-face tunnel boring machine (TBM) tunneling, pitch angle measurement accuracy of the laser target is greatly reduced by low frequency vibrations with large amplitude and multiple degrees of freedom. In order to improve pitch angle measurement accuracy of laser target under vibration, a three-degree-of-freedom (3-DOF) active vibration isolation system is designed in this paper. A plate-type voice coil motor with large air gap and large thrust is designed based on genetic algorithm. In order to increase damping of the vibration isolation system, an eddy current damper is designed by combining copper plate and permanent magnet of the voice coil motor. An active vibration isolation device for laser target was built by using the designed plate-type voice coil motor and eddy current damper, and the dynamic model of the system was established. Aiming at control and stability problems caused by the nonlinear factors, a High-Frequency sliding mode controller which can ensure system asymptotically stable is designed in this paper. A 1–30 Hz sinusoidal sweep excitation experiment was performed on a shaking table. The experimental results show that the active vibration isolation system has a good damping effect. The root mean square (RMS) of acceleration in Y direction can be attenuated by 90.5%, in Z direction can be attenuated by 95.8%. The active isolation system effectively attenuates the vibration transmitted to the laser target, and pitch angular fluctuation of the laser target is reduced by 75.8%. The designed active vibration isolation system improves the pitch angle measurement accuracy of the laser target.
用于 TBM 激光目标的新型 3-DOF 主动隔振方法
在全断面隧道掘进机(TBM)掘进过程中,激光目标的俯仰角测量精度会因振幅大、自由度多的低频振动而大大降低。为了提高振动下激光目标的俯仰角测量精度,本文设计了一种三自由度(3-DOF)主动隔振系统。基于遗传算法,设计了具有大气隙和大推力的板式音圈电机。为了增加隔振系统的阻尼,设计了一种结合铜板和音圈电机永久磁铁的涡流阻尼器。利用所设计的板式音圈电机和涡流阻尼器,构建了激光靶的主动隔振装置,并建立了系统的动态模型。针对非线性因素引起的控制和稳定性问题,本文设计了一种能确保系统渐近稳定的高频滑模控制器。在振动台上进行了 1-30 Hz 正弦扫频激励实验。实验结果表明,主动隔振系统具有良好的减振效果。Y 方向的加速度均方根(RMS)衰减了 90.5%,Z 方向的加速度均方根(RMS)衰减了 95.8%。主动隔振系统有效地减弱了传递到激光靶的振动,激光靶的俯仰角波动降低了 75.8%。所设计的主动隔振系统提高了激光靶的俯仰角测量精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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