Title :
Constrained Interleaving of Serially Concatenated Codes with Inner Recursive Codes
Author :
Fonseka, John P. ; Dowling, Eric M. ; Sang Ik Han ; Yuan Hu
Author_Institution :
Dept. of Electr. Eng., Univ. of Texas at Dallas, Richardson, TX, USA
Abstract :
A novel constrained interleaving technique is proposed to improve serially concatenated codes (SCCs) with inner recursive convolutional codes (IRCCs). In this study, constrained interleavers are designed to achieve a minimum Hamming distance (MHD) for the SCC, dSCC, between dodi and do2di while simultaneously maximizing the interleaver gain, where do and di are the MHD of the outer and inner codes respectively. Constrained interleavers can be constructed to achieve dSCC=dodi while almost maintaining the interleaver gain of uniform interleaving. By imposing additional inter-row constraints, dSCC of constrained interleaving is increased beyond dodi up to do2di, however, at the expense of some interleaver gain. Numerical results demonstrate that constrained interleaving is an efficient way to construct SCCs with low error floors while achieving interleaver gain at relatively short interleaver sizes.
Keywords :
concatenated codes; convolutional codes; IRCC; MHD; constrained interleaver; constrained interleaving; dSCC; inner recursive code; inner recursive convolutional code; minimum Hamming distance; outer code; serially concatenated code; Bit error rate; Block codes; Concatenated codes; Convolutional codes; Gain; Magnetohydrodynamics; Signal to noise ratio; Serial concatenation; inner recursive codes; interleaving;
Journal_Title :
Communications Letters, IEEE
DOI :
10.1109/LCOMM.2013.052013.122654