Application of an iterative 2D equalizer to holographic data storage systems

Sunho Kim, S. Im, Woosik Moon, J. Kim
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Abstract

At the present time when the limits of the magnetic storage systems appear, the holographic data storage (HDS) devices with high data transfer rate and high recording density are emerging as attractive candidates for next-generation optical storage devices. In this paper, to effectively improve the detection performance that is degraded by the two-dimensional inter-symbol interference under the HDS channel environment and the pixel misalignment, an iterative two-dimensional equalization scheme is proposed based on the contraction mapping theorem. In order to evaluate the performance of the proposed scheme, for various holographic channel environments we measure the BER performance using computer simulation and compare the proposed one with the conventional threshold detection scheme, which verifies the superiority of the proposed scheme.
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二维迭代均衡器在全息数据存储系统中的应用
在当前磁存储系统的局限性显现的情况下,具有高数据传输速率和高记录密度的全息数据存储(HDS)器件正成为下一代光存储器件的有吸引力的候选器件。为了有效改善HDS信道环境下二维符号间干扰和像素不对准导致的检测性能下降,本文提出了一种基于收缩映射定理的迭代二维均衡方案。为了评估该方案的性能,在不同的全息信道环境下,通过计算机仿真测试了该方案的误码率性能,并与传统的阈值检测方案进行了比较,验证了该方案的优越性。
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