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Design Optimization of Write Head for Shingled Magnetic Recording

机译:磁记录写头的设计优化

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Following a study on the optimal write head design for perpendicular magnetic recording, this paper aims at optimizing the design of write head for shingled magnetic record by applying the Taguchi method and the response surface methodology. The criteria for the evaluation of the write head design are to maximize the signal-to-noise ratio (SNR) and minimize the bit error rate (BER) in the shingled magnetic recording (SMR). In this paper, the magnetic fields of the write head designs are modeled using finite-element analysis, the SMRs are simulated by applying micromagnetic modeling based on Landau–Lifshitz–Gilbert equation, and the SNR and the BER are characterized using the grain flipping probability model. An optimal design of the write head is obtained to achieve the maximum SNR and the minimum BER. A discussion on the erasure band width is also carried out in this paper. Furthermore, the SNR and the BER at different bits and track densities in SMR are compared and discussed.
机译:在对垂直磁记录的最佳写头设计进行研究之后,本文旨在通过应用Taguchi方法和响应面方法来优化带叠磁记录的写头设计。评估写头设计的标准是最大化带状磁记录(SMR)中的信噪比(SNR)和最小化误码率(BER)。在本文中,使用有限元分析对写入头设计的磁场进行建模,通过基于Landau–Lifshitz–Gilbert方程的微磁建模对SMR进行仿真,并使用晶粒翻转概率来表征SNR和BER。模型。获得了写头的最佳设计,以实现最大SNR和最小BER。本文还对擦除带宽进行了讨论。此外,比较和讨论了SMR中不同比特和磁道密度下的SNR和BER。

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