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Improved Air Gap Control With Acceleration Feedforward Controller Using Time Delay for Solid Immersion Lens-Based Near-Field Storage System

机译:改进的气隙控制,使用基于时间的延迟的加速前馈控制器,用于基于固体浸没透镜的近场存储系统

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This paper aims to improve the robustness of the air-gap controller for a solid immersion lens (SIL)-based near-field (NF) storage system against dynamic disturbances, such as external shocks. The robust control system is essential in NF data storage technology because the nanoscale gap distance between the SIL and the disk is 50 nm or less. Also, the air-gap distance must be maintained without physical contact between the SIL and the disk to evaluate the efficient reading and recording signals when an external shock is applied. Therefore, we propose an improved air-gap control algorithm with an acceleration feedforward controller (AFC) using time delay to maintain the nanoscale air-gap distance without collision for a 5.76 G at 10 ms shock. Thus, the anti-shock control performance for the SIL-based NF storage system in the presence of external shocks is markedly improved. Furthermore, to enhance the performance of the anti-shock air-gap control with AFC using time delay, we use the AFC using time delay with a double disturbance observer (DOB). As a result, the air-gap distance is controlled without contact for a 6.85 G@10 ms shock.
机译:本文旨在提高针对基于固体浸没透镜(SIL)的近场(NF)存储系统的气隙控制器的鲁棒性,以应对动态干扰(例如外部冲击)。强大的控制系统在NF数据存储技术中至关重要,因为SIL与磁盘之间的纳米级间隙距离为50 nm或更小。另外,必须保持气隙距离,并且SIL与磁盘之间不存在物理接触,以在施加外部冲击时评估有效的读取和记录信号。因此,我们提出了一种带有加速前馈控制器(AFC)的改进的气隙控制算法,该算法使用时间延迟来维持纳米级气隙距离,而在10 ms的冲击下5.76 G不会发生碰撞。因此,在存在外部冲击的情况下,基于SIL的NF存储系统的抗冲击控制性能得到了显着提高。此外,为了增强使用带延时功能的AFC的防冲击气隙控制的性能,我们使用带延时功能的AFC和双扰动观察器(DOB)。结果,在没有接触的情况下,气隙距离得到了控制,可承受6.85 G @ 10 ms的冲击。

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