An FPGA-based systolic array to accelerate the BWA-MEM genomic mapping algorithm

2015 International Conference on Embedded Computer Systems: Architectures, Modeling, and Simulation (SAMOS)(2015)

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摘要
We present the first accelerated implementation of BWA-MEM, a popular genome sequence alignment algorithm widely used in next generation sequencing genomics pipelines. The Smith-Waterman-like sequence alignment kernel requires a significant portion of overall execution time. We propose and evaluate a number of FPGA-based systolic array architectures, presenting optimizations generally applicable to variable length Smith-Waterman execution. Our kernel implementation is up to 3× faster, compared to software-only execution. This translates into an overall application speedup of up to 45%, which is 96% of the theoretically maximum achievable speedup when accelerating only this kernel.
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关键词
FPGA-based systolic array,BWA-MEM genomic mapping algorithm,accelerated implementation,genome sequence alignment algorithm,next generation sequencing genomics pipelines,Smith-Waterman-like sequence alignment kernel,variable length Smith-Waterman execution
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