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A Discrete-Time Single-Parameter Combined Feedforward/Feedback Adaptive-Delay Algorithm With Applications to Piezo-Based Raster Tracking

机译:离散时间单参数组合前馈/反馈自适应延迟算法及其在压电光栅跟踪中的应用

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摘要

We evaluate the performance of a combined feedforward/feedback control architecture applied to the raster scan of a piezo-based positioning system. Proper design of feedforward filters for minimum and nonminimum-phase plants is discussed. Further, empirical work suggests that a nontraditional variation upon the feedforward plant-injection architecture allows our system to track a raster pattern at a greater performance level than previously achieved in our research. This variation is manifested as additional delay inserted in the feedforward control system rather than a unity-gain filter constructed from plant parameters. An online adaptive technique is used to determine the required amount of additional delay. The key benefit of the algorithm is an adaptation calculation that does not require knowledge of plant parameters. This method can be applied to piezo-based positioning systems including atomic force microscopes, other scanning probe microscopes, probe-based data storage systems or other systems in which raster tracking is a critical control objective.
机译:我们评估了组合式前馈/反馈控制体系结构的性能,该体系结构应用于基于压电的定位系统的光栅扫描。讨论了用于最小和非最小相位设备的前馈滤波器的正确设计。此外,经验工作表明,前馈植物注入体系结构的非传统变化使我们的系统能够以比以前的研究更高的性能水平来跟踪光栅图案。这种变化表现为在前馈控制系统中插入了额外的延迟,而不是根据工厂参数构造的单位增益滤波器。在线自适应技术用于确定所需的额外延迟量。该算法的主要好处是无需了解工厂参数就可以进行自适应计算。该方法可以应用于基于压电的定位系统,包括原子力显微镜,其他扫描探针显微镜,基于探针的数据存储系统或光栅跟踪为关键控制目标的其他系统。

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