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Two-Dimensional Equalization/Detection for Patterned Media Storage

机译:图案化媒体存储的二维均衡/检测

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摘要

Although patterned media storage (PMS) is a promising candidate for ultrahigh-capacity magnetic data storage, as the capacity of PMS increases, the bit error rate (BER) performance of the system is degraded by increased two-dimensional intersymbol interference (2D-ISI), which results from intertrack interference (ITI), intersymbol interference (ISI), and noise. To improve the system performance under these adverse effects and to increase the capacity, in this paper, we propose to use and/or devise two-dimensional equalization/detection techniques: iterative decision feedback detection (IDFD) and two-dimensional generalized partial response equalization, which is optimized in minimum mean square error (MMSE), followed by one-dimensional Viterbi algorithm (2D-GPR/1D-VA). We evaluate the performance of the proposed methods by using numerical experiments under different amounts of 2D-ISI and noise. Simulation results suggest that under high storage density, the performance of the IDFD is improved by using more iterations and that under the same computational load, 2D-GPR/1D-VA performs better than IDFD. 2D-GPR/1D-VA, therefore, is a good candidate for ultrahigh-capacity PMS.
机译:尽管模式化媒体存储(PMS)是超大容量磁数据存储的有希望的候选者,但是随着PMS容量的增加,系统的误码率(BER)性能会由于二维符号间干扰(2D-ISI)的增加而降低。 ),这是由轨道间干扰(ITI),符号间干扰(ISI)和噪声引起的。为了在这些不利影响下提高系统性能并增加容量,在本文中,我们建议使用和/或设计二维均衡/检测技术:迭代决策反馈检测(IDFD)和二维广义部分响应均衡,并在最小均方误差(MMSE)方面进行了优化,然后是一维维特比算法(2D-GPR / 1D-VA)。我们通过在不同量的2D-ISI和噪声下使用数值实验来评估所提出方法的性能。仿真结果表明,在高存储密度下,通过使用更多的迭代可以提高IDFD的性能,并且在相同的计算负载下,2D-GPR / 1D-VA的性能要优于IDFD。因此,2D-GPR / 1D-VA是超高容量PMS的理想选择。

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