Compensation of repeatable and nonrepeatable disturbances in high NA SIL-based near-field storage systems

Jung-Gon Kim, N. Park
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Abstract

This paper presents an effective control algorithm to avoid physical contact between the disk and the solid immersion lens (SIL) in near-field (NF) storage systems under dynamic operating conditions such as repeatable and nonrepeatable dist urbances due to disk vibrations and external shocks. In particular, the air-gap distance between the disk and the SIL in the NFR system is less than 50 nm. Therefore, the disk and the SIL must be protected to detect the stable gap error signal (GES) during continuous control operation. In this manuscript, we propose an improved air-gap control system using a narrow-ban d disturbance filter (NBDF), which is an effective control method for enhancing the performance of the system for the rejection of repeatable and nonrepeatable disturbances In addition, we demonstrate an improved air-gap controller using a double disturbance observer (DOB) to improve the anti-shock control performance under external shocks. The double DOB uses a binomial Q filter without additional sensors, which keeps the production cost low. Finally, to evaluate the robustness of the control system with the double DOB, we apply a design method that varies the bandwidth of the Q filter.
高NA sil近场存储系统中可重复和不可重复干扰的补偿
本文提出了一种有效的控制算法,以避免近场存储系统在磁盘振动和外部冲击引起的可重复和不可重复的距离扰动等动态运行条件下磁盘与固体浸没透镜(SIL)之间的物理接触。特别是在NFR系统中,磁盘与SIL之间的气隙距离小于50 nm。因此,必须保护磁盘和SIL,以便在连续控制操作过程中检测到稳定间隙误差信号(GES)。在本文中,我们提出了一种改进的气隙控制系统,使用窄禁干扰滤波器(NBDF),这是一种有效的控制方法,可以提高系统对可重复和不可重复干扰的抑制性能。此外,我们还展示了一种改进的气隙控制器,使用双干扰观测器(DOB)来提高外部冲击下的抗冲击控制性能。双DOB使用二项Q滤波器,没有额外的传感器,这使得生产成本低。最后,为了评估双DOB控制系统的鲁棒性,我们采用了一种改变Q滤波器带宽的设计方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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