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LQG controller with sinusoidal reference signal modeling for spiral scanning of atomic force microscope

机译:具有正弦参考信号建模的LQG控制器,用于原子力显微镜的螺旋扫描

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In this paper, we present a spiral scanning method using an atomic force microscope (AFM). Spiral motion is generated by applying slowly varying amplitude sine wave in the X-axis and cosine wave in the Y-axis of the piezoelectric tube (PZT) scanner of the AFM. An LQG controller also designed for damping the resonant mode of a PZT scanner for the lateral positioning of the AFM scanner stage. In this control design, an internal model of the reference sinusoidal signal is introduced with the plant model and an integrator with the system error is introduced. A vibration compensator is also designed and included in feedback loop with the plant to suppress the vibration of the PZT at the resonant frequency. Experimental results demonstrate the effectiveness of the proposed scheme.
机译:在本文中,我们提出了一种使用原子力显微镜(AFM)的螺旋扫描方法。螺旋运动是通过在AFM的压电管(PZT)扫描仪的X轴上施加缓慢变化的正弦波并在Y轴上施加余弦波来产生的。 LQG控制器还设计用于阻尼PZT扫描仪的共振模式,以实现AFM扫描仪台的横向定位。在这种控制设计中,引入了参考正弦信号的内部模型以及工厂模型,并引入了具有系统误差的积分器。还设计了振动补偿器,并将其包括在设备的反馈回路中,以抑制PZT在谐振频率下的振动。实验结果证明了该方案的有效性。

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