Title :
An integrated error control and dc-free code based on multimode coding
Author :
Hughes, Aaron P. ; Fair, Ivan J.
Author_Institution :
Qualcomm, San Diego, CA, USA
Abstract :
Optical disk storage systems use both error control (EC) codes and dc-free constrained sequence (CS) codes in order to increase the reliability of the data read from the disk. We present a method of integrating these coding techniques in order to overcome drawbacks with the conventional manner in which these coding procedures are concatenated. Our technique is based on the principle of multimode coding. Each source word (SW) is represented by a set of complementary EC codewords (CWs), and from this set the encoder selects the EC CW that best meets the CS goals of the system. The decoding structure avoids the problem of error propagation during CS decoding by performing error correction before removing the effects of the CS code. Power spectra of encoded sequences generated by a hardware implementation have a at 0 Hz, confirming that these coded sequences are dc-free. BER simulations demonstrate the superior performance of this combined EC and CS code on a dc-constrained noisy channel.
Keywords :
channel coding; decoding; error correction codes; error statistics; optical disc storage; 0 Hz; BER simulations; codewords; dc-constrained noisy channel; dc-free constrained sequence codes; decoding structure; error control codes; integrated error control; multimode coding; optical disk storage systems; power spectra; source word; Binary sequences; Bit error rate; Concatenated codes; Decoding; Error correction; Error correction codes; Hardware; Integrated optics; Logic; Power generation;
Journal_Title :
Consumer Electronics, IEEE Transactions on
DOI :
10.1109/TCE.2005.1510500