Reduced complexity of multi-track joint 2-D Viterbi detectors for bit-patterned media recording channel

dc.contributor.authorL. M. M. Myint
dc.contributor.authorC. Warisarn
dc.date.accessioned2025-07-21T05:57:31Z
dc.date.issued2016-12-27
dc.description.abstractTwo-dimensional (2-D) interference is one of the prominent challenges in ultra-high density recording system such as bit patterned media recording (BPMR). The multi-track joint 2-D detection technique with the help of the array-head reading can tackle this problem effectively by jointly processing the multiple readback signals from the adjacent tracks. Moreover, it can robustly alleviate the impairments due to track mis-registration (TMR) and media noise. However, the computational complexity of such detectors is normally too high and hard to implement in a reality, even for a few multiple tracks. Therefore, in this paper, we mainly focus on reducing the complexity of multi-track joint 2-D Viterbi detector without paying a large penalty in terms of the performance. We propose a simplified multi-track joint 2-D Viterbi detector with a manageable complexity level for the BPMR’s multi-track multi-head (MTMH) system. In the proposed method, the complexity of detector’s trellis is reduced with the help of the joint-track equalization method which employs 1-D equalizers and 2-D generalized partial response (GPR) target. Moreover, we also examine the performance of a full-fledged multi-track joint 2-D detector and the conventional 2-D detection. The results show that the simplified detector can perform close to the full-fledge detector, especially when the system faces high media noise, with the significant low complexity.
dc.identifier.doi10.1063/1.4973290
dc.identifier.urihttps://dspace.kmitl.ac.th/handle/123456789/6102
dc.subjectViterbi algorithm
dc.subjectPatterned media
dc.subjectViterbi decoder
dc.subject.classificationCellular Automata and Applications
dc.titleReduced complexity of multi-track joint 2-D Viterbi detectors for bit-patterned media recording channel
dc.typeArticle

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