Complexity evaluation of non-binary Galois field LDPC code decoders

Timo Lehnigk-Emden, Norbert Wehn · 2010

Forward error correction is an essential part of digital communication systems. Non-binary low-density parity-check (NB-LDPC) codes have an excellent communications performance for short block lengths. The higher the field size is, the better the communications performance is. Non-binary LDPC codes can outperform all other state-of-the-art code classes. However, the algorithmic decoding complexity grows with the field size. For an intended, future use of these codes in real systems, an efficient hardware implementation is mandatory. Hardware architectures for binary LDPC codes are well investigated, but efficient implementation of non-binary LDPC decoders is still an open field. To the best of our knowledge, this paper studies for the first time the hardware implementation costs for non-binary LDPC decoders with Galois field sizes of 4, 16 and 256 on FPGA and a 65nm ASIC technology.

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