DocumentCode
25273
Title
A High Throughput Efficient Approach for Decoding LDPC Codes onto GPU Devices
Author
Le Gal, Bertrand ; Jego, Christophe ; Crenne, Jeremie
Author_Institution
IPB/ENSEIRB-MATMECA, Univ. of Bordeaux, Bordeaux, France
Volume
6
Issue
2
fYear
2014
fDate
Jun-14
Firstpage
29
Lastpage
32
Abstract
Low density parity check (LDPC) decoding process is known as compute intensive. This kind of digital communication applications was recently implemented onto graphic processing unit (GPU) devices for LDPC code performance estimation and/or for real-time measurements. Overall previous studies about LDPC decoding on GPU were based on the implementation of the flooding-based decoding algorithm that provides massive computation parallelism. More efficient layered schedules were proposed in literature because decoder iteration can be split into sublayer iterations. These schedules seem to badly fit onto GPU devices due to restricted computation parallelism and complex memory access patterns. However, the layered schedules enable the decoding convergence to speed up by two. In this letter, we show that: 1) layered schedule can be efficiently implemented onto a GPU device; and 2) this approach-implemented onto a low-cost GPU device-provides higher throughputs with identical correction performances (BER) compared to previously published results.
Keywords
graphics processing units; parity check codes; BER; GPU devices; LDPC code performance estimation; LDPC decoding process; bit error rate; computation parallelism; correction performance; decoder iteration; digital communication applications; flooding-based decoding algorithm; graphics processing unit; high throughput efficient approach; layered schedules; low density parity check codes; memory access patterns; Decoding; Graphics processing units; Iterative decoding; Kernel; Performance evaluation; Throughput; Graphic processing unit (GPU); layered-based algorithm; low density parity check (LDPC); throughput optimized;
fLanguage
English
Journal_Title
Embedded Systems Letters, IEEE
Publisher
ieee
ISSN
1943-0663
Type
jour
DOI
10.1109/LES.2014.2311317
Filename
6762823
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