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A new method for robust damping and tracking control of scanning probe microscope positioning stages

机译:扫描探针显微镜定位平台鲁棒阻尼和跟踪控制的新方法

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摘要

This paper demonstrates a simple second-order controller that eliminates scan-induced oscillation and provides integral tracking action. The controller can be retrofitted to any scanning probe microscope with position sensors by implementing a simple digital controller or operational amplifier circuit. The controller is demonstrated to improve the tracking bandwidth of an NT-MDT scanning probe microscope from 15 Hz (with an integral controller) to 490 Hz while simultaneously improving gain-margin from 2 to 7 dB. The penalty on sensor induced positioning noise is minimal. A unique benefit of the proposed control scheme is the performance and stability robustness with respect to variations in resonance frequency. This is demonstrated experimentally by a change in resonance frequency from 934 to 140 Hz. This change does not compromise stability or significantly degrade performance. For the scanning probe microscope considered in this paper, the noise is marginally increased from 0.30 to 0.39 nm rms. Open and closed-loop experimental images of a calibration standard are reported at speeds of 1, 10, and 31 lines per second (with a scanner resonance frequency of 290 Hz). Compared with traditional integral controllers, the proposed controller provides a bandwidth improvement of greater than 10 times. This allows faster imaging and less tracking lag at low speeds.
机译:本文演示了一种简单的二阶控制器,该控制器消除了扫描引起的振荡并提供了积分跟踪作用。通过实现简单的数字控制器或运算放大器电路,可以将该控制器改装为任何带有位置传感器的扫描探针显微镜。控制器被证明可以将NT-MDT扫描探针显微镜的跟踪带宽从15 Hz(带集成控制器)提高到490 Hz,同时将增益裕度从2 dB提高到7 dB。传感器引起的定位噪声的损失最小。所提出的控制方案的独特优点是针对谐振频率变化的性能和稳定性。通过将共振频率从934 Hz更改为140 Hz,可以通过实验证明这一点。此更改不会损害稳定性或不会显着降低性能。对于本文中考虑的扫描探针显微镜,噪声从0.30 rms轻微增加到0.39 nm rms。校准标准品的开环和闭环实验图像以每秒1、10和31行的速度报告(扫描仪共振频率为290 Hz)。与传统的积分控制器相比,该控制器的带宽提高了10倍以上。这样可以实现更快的成像速度,并在低速时减少跟踪滞后。

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