Title :
Multistage coding for data storage systems
Author :
El-Soudani, Magdi S.
Author_Institution :
Dept. of Electr. Eng., Qatar Univ., Doha, Qatar
Abstract :
Typical coding schemes for magnetic or optical recording usually consist of two coding stages, error correcting coding (ECC) followed by line or modulation coding. Two methods are presented to design a line code with error correcting capability. Both methods modify the linear error-correcting codes so that they satisfy the runlength constraints of runlength-limited (RLL) sequences. Through these methods we construct combined ECC/RLL codes with different runlengths. The first method utilizes a linear combination of ECC codewords with a modification vector. The second method uses a two-dimensional code to design the required ECC/RLL code. Both methods are basically dependent on binary operations and minor changes to the ECC coding/decoding circuitry are required. An asymptotic upper bound on the maximum runlength for both methods is found and the performance of the proposed ECC/RLL codes with conventional multistage cascaded schemes of ECC and RLL is also studied
Keywords :
binary sequences; decoding; digital magnetic recording; error correction codes; linear codes; magnetic storage; optical storage; runlength codes; asymptotic upper bound; combined ECC/RLL codes; data storage systems; error correcting coding; line code; linear error-correcting codes; magnetic recording; modification vector; multistage cascaded schemes; multistage coding; optical recording; runlength constraints; runlength-limited sequences; two-dimensional code; Circuits; Data storage systems; Error correction; Error correction codes; Interference constraints; Magnetic recording; Modulation coding; Optical recording; Upper bound; Vectors;
Conference_Titel :
Networks, 1995. Theme: Electrotechnology 2000: Communications and Networks. [in conjunction with the] International Conference on Information Engineering., Proceedings of IEEE Singapore International
Print_ISBN :
0-7803-2579-6
DOI :
10.1109/SICON.1995.526071