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Active damping of a piezoelectric tube scanner using self-sensing piezo actuation

机译:使用自感应压电驱动的压电管扫描仪的主动阻尼

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In most Atomic Force Microscopes (AFM), a piezoelectric tube scanner is used to position the sample underneath the measurement probe. Oscillations stemming from the weakly damped resonances of the tube scanner are a major source of image distortion, putting a limitation on the achievable imaging speed. This paper demonstrates active damping of these oscillations in multiple scanning axes without the need for additional position sensors. By connecting the tube scanner in a capacitive bridge circuit the scanner oscillations can be measured in both scanning axes, using the same piezo material as an actuator and sensor simultaneously. In order to compensate for circuit imbalance caused by hysteresis in the piezo element, an adaptive balancing circuit is used. The obtained measurement signal is used for feedback control, reducing the resonance peaks in both scanning axes by 18 dB and the cross-coupling at those frequencies by 30 dB. Experimental results demonstrate a significant reduction in scanner oscillations when applying the typical triangular scanning signals, as well as a strong reduction in coupling induced oscillations. Recorded AFM images show a considerable reduction in image distortion due to the proposed control method, enabling artifact free AFM-imaging at a speed of 122 lines per second with a standard piezoelectric tube scanner.
机译:在大多数原子力显微镜(AFM)中,使用压电管扫描仪将样品置于测量探头下方。由管扫描仪的弱阻尼共振引起的振荡是图像失真的主要来源,从而限制了可达到的成像速度。本文演示了在多个扫描轴上对这些振荡的主动阻尼,无需额外的位置传感器。通过将管式扫描仪连接到电容桥电路中,可以同时使用与执行器和传感器相同的压电材料在两个扫描轴上测量扫描仪的振荡。为了补偿由压电元件中的磁滞引起的电路不平衡,使用了自适应平衡电路。所获得的测量信号用于反馈控制,可将两个扫描轴上的共振峰降低18 dB,并将那些频率处的交叉耦合降低30 dB。实验结果表明,当应用典型的三角扫描信号时,扫描仪振荡会大大降低,并且耦合感应振荡会大大降低。由于所提出的控制方法,记录的AFM图像显示出图像失真的显着降低,从而可以使用标准压电管扫描仪以122线/秒的速度实现无伪像的AFM成像。

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