DocumentCode
2025838
Title
A massively parallel implementation of QC-LDPC decoder on GPU
Author
Wang, Guohui ; Wu, Michael ; Sun, Yang ; Cavallaro, Joseph R.
Author_Institution
Dept. of Electr. & Comput. Eng., Rice Univ., Houston, TX, USA
fYear
2011
fDate
5-6 June 2011
Firstpage
82
Lastpage
85
Abstract
The graphics processor unit (GPU) is able to provide a low-cost and flexible software-based multi-core architecture for high performance computing. However, it is still very challenging to efficiently map the real-world applications to GPU and fully utilize the computational power of GPU. As a case study, we present a GPU-based implementation of a real-world digital signal processing (DSP) application: low-density parity-check (LDPC) decoder. The paper shows the efforts we made to map the algorithm onto the massively parallel architecture of GPU and fully utilize GPU´s computational resources to significantly boost the performance. Moreover, several efficient data structures have been proposed to reduce the memory access latency and the memory bandwidth requirement. Experimental results show that the proposed GPU-based LDPC decoding accelerator can take advantage of the multi-core computational power provided by GPU and achieve high throughput up to 100.3Mbps.
Keywords
computer graphic equipment; coprocessors; data structures; decoding; multiprocessing systems; parity check codes; signal processing; QC-LDPC decoder; data structures; digital signal processing application; graphics processor unit; high performance computing; low density parity check decoder; massively parallel implementation; memory access latency; memory bandwidth requirement; software based multicore architecture; Decoding; Graphics processing unit; IEEE 802.11n Standard; Instruction sets; Message systems; Parity check codes; Throughput; CUDA; GPU; LDPC decoder; parallel computing;
fLanguage
English
Publisher
ieee
Conference_Titel
Application Specific Processors (SASP), 2011 IEEE 9th Symposium on
Conference_Location
San Diego, CA
Print_ISBN
978-1-4577-1212-8
Type
conf
DOI
10.1109/SASP.2011.5941084
Filename
5941084
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