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Adaptation and Timing Recovery for Two-Dimensional Optical Storage

机译:二维光存储的适应和定时恢复

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This paper discusses several issues related to adaptation and timing recovery for two-dimensional (2D) optical storage. In the TwoDOS format bits are stored on a 2D hexagonal lattice which is formed by recording multiple bit rows with a fixed phase relation in a so-called broad spiral or meta-spiral. Besides a large increase in data rate by reading out with multiple spots, also a density increase by a factor of two compared to Blu-ray Disc is targeted. To increase the storage density, 2D signal processing is proposed including 2D PRML detection in the form of a stripe-wise Viterbi detector. This detector introduces an increasing detection delay when going from the outer rows towards the center of the broad spiral. For fast control loops in a decision-directed mode, special measures are needed to avoid instability due to this delay. Another issue is the large span of the 2D inter-symbol interference at higher densities and tilt, leading to a large 2D equalizer. Furthermore, in case the broad spiral is recorded with a multiple-pass mastering technology (e.g. for ROM TwoDOS discs), write-channel imperfections such as time-varying lattice distortion require independent timing recovery on each row within the broad spiral.
机译:本文讨论了与二维(2D)光存储器的适应和定时恢复有关的几个问题。在TWODOS格式中,比特存储在2D六边形晶格上,通过在所谓的宽螺旋或元螺旋中记录具有固定相位关系的多个比特行形成。除了用多个斑点读出数据速率的大幅增加之外,与蓝光光盘相比,瞄准了两个倍数的密度增加了两倍。为了提高存储密度,提出了2D信号处理,包括条纹viterbi检测器的形式的2D PRML检测。当从外行朝向广泛螺旋的中心进行时,该检测器引入了增加的检测延迟。对于在决策模式下的快速控制循环,需要采取特殊措施来避免由于此延迟而不稳定。另一个问题是在较高密度和倾斜度的2D符号间干扰的大跨度,导致大2D均衡器。此外,在宽螺旋的情况下,用多通验证技术记录(例如,对于ROM TWODOS盘),诸如时变的晶格失真等写通道缺陷需要在广义螺旋内的每一行上需要独立的定时恢复。

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