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Increased areal density using a 2-dimensional approach
Ahmed MZ, Donnelly T, Davey PJ, Clegg WW
IEEE Transactions on Magnetics, Volume 37, Number 4, pp. 1896-1898, 2001
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There is a drive toward achieving much higher track density in magnetic recording. Increase in track density will produce more interaction/crosstalk between adjacent tracks. The simulated variation of bit error rate (BER) as a result of increased inter-track interference (ITI) using a Viterbi Detector is presented in this paper. Results show that for a given BER and signal-to-noise ratio (SNR), different levels of ITI can be tolerated depending on the code. Calculations suggest 2-dimensional modulation codes designed for a channel experiencing ITI can result in up to 23% gain in areal density

Ahmed MZ, Donnelly T, Davey PJ, Clegg WW