DocumentCode :
646974
Title :
FPGA acceleration of Markov Random Field TRW-S inference for stereo matching
Author :
Jungwook Choi ; Rutenbar, Rob
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Illinois at Urbana-Champaign, Urbana, IL, USA
fYear :
2013
fDate :
18-20 Oct. 2013
Firstpage :
139
Lastpage :
142
Abstract :
In this paper, we present our hardware accelerator for inference computations on Markov Random Fields (MRFs), which wins the “adjusted run time” category of MEMOCODE 2013 design contest. The contest problem is to accelerate the popular Belief Propagation (BP) algorithm for MRF stereo matching, but BP often suffers from non-convergence in its MRF inference. To overcome the drawbacks of BP, we show how a superior method-Sequential Tree-Reweighted message passing (TRW-S)-can be rendered in hardware. TRW-S has reliable convergence, guaranteed by its so-called “sequential” computation. We show how to implement TRW-S in FPGA hardware so that it exploits significant parallelism and memory bandwidth. Our FPGA implementation demonstrates superior MRF inference performance and comparable quality of stereo matching results on the provided stereo matching tasks comYXB3-02195-A021pared to the reference BP software.
Keywords :
Markov processes; belief networks; field programmable gate arrays; image matching; message passing; stereo image processing; BP algorithm; FPGA acceleration; MEMOCODE 2013 design contest; MRF inference; MRF stereo matching; Markov random field; TRW-S inference; adjusted run time category; belief propagation algorithm; hardware accelerator; inference computations; sequential computation; sequential tree-reweighted message passing; Computer architecture; Field programmable gate arrays; Hardware; Inference algorithms; Message passing; Minimization; Stereo vision; Belief propagation (BP); FPGA implementation; Markov random field (MRF) inference; Sequential tree-reweighed message passing (TRW-S); Stereo matching;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Formal Methods and Models for Codesign (MEMOCODE), 2013 Eleventh IEEE/ACM International Conference on
Conference_Location :
Portland, OR
Print_ISBN :
978-1-4799-0903-2
Type :
conf
Filename :
6670952
Link To Document :
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