基于滑峰滤波器的探针存储系统中螺旋纳米定位控制器的跟踪精度和稳定性

A. Kotsopoulos, T. Antonakopoulos
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引用次数: 0

摘要

高精度纳米定位是高密度探针存储器件的关键功能,其性能对器件的可靠性有着决定性的影响。为了实现更高的数据速率,使用非常规的纳米定位方案对控制算法提出了新的要求。在这项工作中,我们从精度和稳定性的角度分析了H2控制器与滑动峰值滤波器相结合,沿阿基米德螺旋轨迹移动。结果表明,正确选择峰值滤波器参数可以使系统稳定而精确地控制,从而实现高定位速度,并支持不同的读取和写入数据速率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tracking accuracy and stability of a sliding peak-filter based controller for spiral nanopositioning in probe storage systems
High precision nanopositioning is a crucial function of high-density probe-based storage devices and its performance affects determinatively the device's reliability. The use of non-conventional nanopositioning schemes for achieving much higher data rates imposes new requirements on the control algorithms. In this work we analyze in terms of accuracy and stability an H2 controller combined with a sliding peak-filter for moving along an archimedean spiral trajectory. As it is demonstrated, proper selection of the peak-filter parameters results to a stable and accurately controlled system that achieves high positioning velocities and also supports different read and write data rates.
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