Title :
Design of Rate-Compatible Irregular Repeat Accumulate Codes
Author :
Yue, Guosen ; Wang, Xiaodong ; Madihian, Mohammad
Author_Institution :
NEC Lab America, Princeton
fDate :
6/1/2007 12:00:00 AM
Abstract :
We consider the design of efficient rate-compatible (RC) irregular repeat accumulate (IRA) codes over a wide code rate range. The goal is to provide a family of RC codes to achieve high throughput in hybrid automatic repeat request (ARQ) scheme for high-speed data packet wireless systems. As a subclass of low-density parity-check codes, IRA codes have an extremely simple encoder and a low-complexity decoder while providing capacity approaching performance. We focus on a hybrid design method which employs both puncturing and extending. We propose a simple puncturing method based on minimizing the maximal recoverable step of the punctured nodes. We also propose a new extending scheme for IRA codes by introducing the degree-1 parity bits for the lower rate codes and obtaining the optimal proportions of extended nodes through density evolution analysis. The throughput performance of the designed RC-IRA codes in hybrid ARQ is evaluated for both AWGN and block fading channels. Simulation results demonstrate that our designed RC codes offer good error correction performance over a wide rate range and provide high throughput, especially in the high and low signal-to-noise ratio regions.
Keywords :
AWGN channels; automatic repeat request; channel coding; error correction codes; fading channels; parity check codes; AWGN; automatic repeat request; block fading channels; data packet wireless systems; degree-1 parity bits; error correction performance; irregular repeat accumulate codes; low-density parity-check codes; puncturing method; rate-compatible codes; AWGN; Automatic repeat request; Decoding; Design methodology; Error correction codes; Fading; Parity check codes; Signal design; Signal to noise ratio; Throughput; Extending; hybrid automatic repeat request (ARQ); irregular repeat accumulate (IRA) codes; low-density parity-check (LDPC) codes; puncturing; rate compatible (RC);
Journal_Title :
Communications, IEEE Transactions on
DOI :
10.1109/TCOMM.2007.898834