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A Smith-Waterman Hardware Accelerator Design using Sliding Window for Genomic Sequence Alignment
- Baik, Junhyuk;
- Lee, Donghui;
- Kim, Yongtae
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2초록
This paper presents a hardware accelerator based on the Smith-Waterman algorithm, a well-known sequence alignment technique in bioinformatics. The proposed accelerator enhances its hardware efficiency significantly by employing a sliding window technique under a linear systolic array structure. The multiple processing element (PE) in the array allows parallel computations of the alignment, improving hardware resource utilization. When implemented in a 32-nm CMOS technology, the proposed Smith-Waterman hardware design enhances the area, delay, power, and energy by 80.6%, 52.9%, 67.4%, and 84.6%, respectively, versus the traditional counterpart without the sliding window scheme.
키워드
Smith-Waterman aigorithm; hardware accelerator; sequence alignment; sliding window; systolic array; processing element
- 제목
- A Smith-Waterman Hardware Accelerator Design using Sliding Window for Genomic Sequence Alignment
- 저자
- Baik, Junhyuk; Lee, Donghui; Kim, Yongtae
- 발행일
- 2023
- 유형
- Proceedings Paper
- 저널명
- 2023 20TH INTERNATIONAL SOC DESIGN CONFERENCE, ISOCC
- 페이지
- 1 ~ 2
- 언어
- ENG
- 출판사
- IEEE
- 발행국가
- 미국
- 분량
- 2 페이지
- ISSN
- P 2163-9612