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Tracking servo method using reflective optical filter for holographic data storage system

机译:全息数据存储系统中使用反射式滤光片的跟踪伺服方法

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摘要

Holographic data storage system is one of the next-generation data storage systems and is characterized by its high storage density and fast data transfer rate. However, holographic data storage systems are very sensitive to disturbances that affect the position of the media. Therefore, tracking servo control is needed to ensure a good performance of the system even if disturbances occur, such as eccentricity of the disk and external shock. In our previous researches on tracking servo methods, we used additional beams or recorded servo track images with data pages to record additional gratings with data pages. Therefore, the recording density may be reduced and the system may be complicated. In addition, the performance of the system may be compromised by cross-talk noise caused between the reference beams and additional beams. In this paper, we propose a tracking servo method using the residual beam, which is reflected by the reflective optical filter. This method does not require recording supplementary gratings or use additional beams, and only needs to record data pages. The residual beam is retrieved with desired retrieved beam by the reference beam and wasted during the retrieving process. We first constructed a holographic data storage system and designed a reflective optical filter to detect tracking error signals. After detecting the tracking error signals, a tracking servo controller using a lead-lag compensator was incorporated to reduce the tracking error signals. The performance of the designed controller was verified by simulated and experimental results. Finally, the performance of the tracking servo method was investigated by comparing the retrieved data images.
机译:全息数据存储系统是下一代数据存储系统之一,其特点是存储密度高,数据传输速度快。但是,全息数据存储系统对影响介质位置的干扰非常敏感。因此,即使发生诸如盘的偏心和外部冲击之类的干扰,也需要跟踪伺服控制以确保系统的良好性能。在我们先前对跟踪伺服方法的研究中,我们使用附加光束或带有数据页的已记录伺服跟踪图像来记录具有数据页的附加光栅。因此,记录密度可能降低并且系统可能变得复杂。此外,系统的性能可能会因参考光束和其他光束之间的串扰噪声而受损。在本文中,我们提出了一种利用剩余光束的跟踪伺服方法,该光束被反射型光学滤波器反射。此方法不需要记录辅助光栅或使用其他光束,仅需要记录数据页。剩余光束由参考光束与所需的回收光束一起回收,并在回收过程中被浪费。我们首先构建了一个全息数据存储系统,并设计了一个反射式光学滤波器来检测跟踪误差信号。在检测到跟踪误差信号之后,并入了使用超前滞后补偿器的跟踪伺服控制器,以减少跟踪误差信号。仿真和实验结果验证了所设计控制器的性能。最后,通过比较检索到的数据图像来研究跟踪伺服方法的性能。

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