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Tracking of Triangular Reference Signals Using LQG Controllers for Lateral Positioning of an AFM Scanner Stage

机译:使用LQG控制器跟踪三角参考信号以进行AFM扫描仪台的横向定位

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This paper presents the design of an internal reference model-based optimal linear quadratic Gaussian (LQG) controller for the lateral positioning of a piezoelectric tube actuator (PTA) used in an atomic force microscope (AFM). In this control design, internal modeling of the reference signal and system error are considered. As a result, the steady-state tracking error is minimized. In addition to the LQG controller, a vibration compensator is incorporated with the plant to suppress the vibration of the PTA at the resonance frequency. It achieves a high closed-loop bandwidth and significant damping of the resonant mode of the PTA, which enables a reference triangular signal to be tracked. Comparison of performance of the optimal LQG controller augmented with a vibration compensator and a PI controller demonstrates that the proposed controller shows significant improvements over the existing AFM PI controller.
机译:本文介绍了基于内部参考模型的最佳线性二次高斯(LQG)控制器的设计,该控制器用于在原子力显微镜(AFM)中使用的压电管致动器(PTA)的横向定位。在这种控制设计中,考虑了参考信号的内部建模和系统误差。结果,稳态跟踪误差被最小化。除LQG控制器外,工厂还装有振动补偿器,以抑制PTA在共振频率下的振动。它实现了高闭环带宽并显着抑制了PTA的谐振模式,从而可以跟踪参考三角信号。最佳的LQG控制器(带有振动补偿器和PI控制器)的性能比较表明,与现有的AFM PI控制器相比,所提出的控制器具有显着的改进。

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