DocumentCode :
3602485
Title :
Signal-Processing Schemes for Multi-Track Recording and Simultaneous Detection Using High Areal Density Bit-Patterned Media Magnetic Recording
Author :
Saito, Hidetoshi
Author_Institution :
Dept. of Appl. PhysicsSchool of Adv. Eng., Kogakuin Univ., Tokyo, Japan
Volume :
51
Issue :
11
fYear :
2015
Firstpage :
1
Lastpage :
4
Abstract :
Recent magnetic recording technologies have opened the possibility of reaching densities of 10 Tb/in2. A 2-D magnetic recording (TDMR) scheme has pointed out one of the key technologies for increasing areal density. From the viewpoint of signal processing for TDMR, a recording system is desirable or preferable to be capable of allowing to get readback signals from a group of adjacent parallel tracks and detect recorded data written in these tracks simultaneously. This paper proposes a novel signal processing scheme with coding and detection for bit-patterned media recording (BPMR) which is considered to be TDMR using bit-patterned media. Actually, the proposed signal processing scheme for BPMR gets mixed readback signal sequences from the parallel tracks using a single reading head and these readback signal sequences are equalized to a frequency response given by a desired 2-D generalized partial response system. In decoding process, a single maximum likelihood sequence detector is capable of detecting the equalized signal sequence, and it leads to an increase in the effective transfer rate because the recorded data on the parallel tracks are decoded for each time slot.
Keywords :
magnetic recording; maximum likelihood detection; signal processing; 2-D magnetic recording scheme; TDMR; bit-patterned media recording; coding; high areal density bit-patterned media magnetic recording; maximum likelihood sequence detector; multi-track recording; signal processing scheme; signal-processing schemes; Bit error rate; Equalizers; Ground penetrating radar; Magnetic recording; Media; Target tracking; 2-D magnetic recording (TDMR); bit-patterned media; bit-patterned media (BPM); generalized partial response; generalized partial response (GPR); two-dimensioinal magnetic recording;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2015.2436717
Filename :
7112172
Link To Document :
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