DocumentCode :
1346810
Title :
Error propagation evaluation for RLL-constrained DFE read channels
Author :
Krachkovsky, Victor Yu ; Lee, Yuan Xing ; Mathew, George ; Liu, Bin ; Lin, Maria Y. ; Wood, Roger W. ; Chwee, Tong Mui
Author_Institution :
Data Storage Inst., Singapore
Volume :
34
Issue :
1
fYear :
1998
fDate :
1/1/1998 12:00:00 AM
Firstpage :
147
Lastpage :
152
Abstract :
Decision feedback equalization (DFE) is a promising low-cost solution for signal detection in magnetic recording channels. In terms of the bit error rate after detection, (0,k)-DFE and MDFE (Multilevel Decision Feedback Equalization) are comparable to (0,k)-PR4ML. Error propagation, however, is one of the major concerns for all DFE approaches. In this paper, an analysis of error propagation for RLL-constrained DFE at all stages of data processing, including RLL decoder and error correction, is performed. To evaluate error propagation, a Markov chain is constructed that explicitly models any type of RLL constraints. From this model, a Markov chain, describing the error distribution inside the bursts, is derived and a relation between these chains and error propagation decay rate is established. Performance of interleaved ECC (Error Correction Code) is also evaluated. The results obtained are compared with those from simulation. By using the newly developed model, a special technique of equalizer design, aimed to reduce error propagation, is analyzed. The comparison between (0,k)-DFE and MDFE in terms of the bit error rate after ECC is also provided
Keywords :
Markov processes; decision feedback equalisers; decoding; error correction codes; error statistics; interleaved codes; magnetic recording; runlength codes; signal detection; (0,k)-DFE; (0,k)-PR4ML; Markov chain; RLL decoder; RLL-constrained DFE read channels; bit error rate; decision feedback equalization; equalizer design; error burst distribution; error correction code; error distribution; error propagation decay rate; error propagation evaluation; interleaved ECC; magnetic recording channels; multilevel decision feedback equalization; signal detection; simulation; Bit error rate; Data processing; Decision feedback equalizers; Error analysis; Error correction; Error correction codes; Magnetic analysis; Magnetic recording; Performance analysis; Signal detection;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.663504
Filename :
663504
Link To Document :
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