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Modified 2D Viterbi Algorithm using 2D Modulation Encoding Constraints in BPMR Systems

机译:BPMR系统中使用2D调制编码约束的改进2D Viterbi算法

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The severity of inter-symbol interference (ISI) and inter-track interference (ITI) effects caused by the reduction of the spacing between bit islands in the along- and across-track directions to acquire ultra-high areal densities (ADs) is the main problem in bit-patterned magnetic recording (BPMR) systems. We call these two effects as two-dimensional (2D) interference, which can degrade the overall system performance. Practically, a one-dimensional (1D) modulation code, e.g., run-length limited (RLL) code, is essentially utilized to prevent the severe ISI effect. The use of 2D detectors is also one of the important ways to cope with the severe ITI; however, its complexity is quite high. To avoid the severe ITI effect and complex 2D detectors; therefore, we propose to apply the 1D RLL code as the 2D modulation code. Then, the 2D modulation encoding constraint is employed to reduce the number of states and branches in the trellis of the proposed modified 2D Viterbi detector. Simulation results reveal that the proposed detector not only delivers a lower complexity but also provides superior bit error rate gain, especially at ultra-high ADs and/or large location fluctuation.
机译:符号间干扰(ISI)和磁道间干扰(ITI)效应的严重性是由于沿磁道方向和跨磁道方向上的位岛之间的间距减小而获得超高面密度(AD)所致。位模式磁记录(BPMR)系统中的主要问题。我们将这两种效应称为二维(2D)干扰,这会降低整个系统的性能。实际上,一维(1D)调制码,例如游程长度受限(RLL)码,基本上用于防止严重的ISI效应。二维检测器的使用也是应对严重ITI的重要方法之一。但是,它的复杂度很高。为了避免严重的ITI效应和复杂的2D检测器;因此,我们建议将1D RLL码用作2D调制码。然后,采用2D调制编码约束来减少所提出的改进2D维特比检测器的网格中的状态和分支数量。仿真结果表明,提出的检测器不仅具有较低的复杂度,而且还提供了出色的误码率增益,特别是在超高AD和/或较大位置波动的情况下。

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