Design and analysis of high performance matrix filling for DNA sequence alignment accelerator using asic design flow: article / Nurzaima Mahmod

This paper presents the design and analysis high performance matrix filling for DNA sequence alignment accelerator using ASIC design flow. The objective of this paper is to design and analysis matrix module of DNA sequence alignment accelerator using clock cycle to get high performance. The scope of...

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Main Author: Mahmod, Nurzaima
Format: Article
Language:English
Online Access:https://ir.uitm.edu.my/id/eprint/106561/1/106561.pdf
https://ir.uitm.edu.my/id/eprint/106561/
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spelling my.uitm.ir.1065612024-11-30T11:36:45Z https://ir.uitm.edu.my/id/eprint/106561/ Design and analysis of high performance matrix filling for DNA sequence alignment accelerator using asic design flow: article / Nurzaima Mahmod Mahmod, Nurzaima This paper presents the design and analysis high performance matrix filling for DNA sequence alignment accelerator using ASIC design flow. The objective of this paper is to design and analysis matrix module of DNA sequence alignment accelerator using clock cycle to get high performance. The scope of this paper is to optimize the DNA sequences alignment on the matrix rilling module by implementing a parallel method of the Smith-Waterman algorithm. This method provides magnificent speed up over than traditional sequential implementation methods while it sensitivity detection is still remained. To optimize the performance of the algorithm by exploiting parallelism in the design several techniques have been developed. In the advanced engineering technology, the massive parallelism can be implemented by using the Field Programmable Logic Array (FPGA) techniques. The design was developed in Verilog HDL coding and synthesis by using LINUX tools. From the LINUX tools, the optimum combination of parameten is manipulated to produce the most energy efficient IC. The design produces an ASIC that can work at 5ns until tons clock period and range of ICC time between 0.63ns until l.67ns. The area of this design is 10304.358mm2 Article PeerReviewed text en https://ir.uitm.edu.my/id/eprint/106561/1/106561.pdf Design and analysis of high performance matrix filling for DNA sequence alignment accelerator using asic design flow: article / Nurzaima Mahmod. pp. 1-9.
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
description This paper presents the design and analysis high performance matrix filling for DNA sequence alignment accelerator using ASIC design flow. The objective of this paper is to design and analysis matrix module of DNA sequence alignment accelerator using clock cycle to get high performance. The scope of this paper is to optimize the DNA sequences alignment on the matrix rilling module by implementing a parallel method of the Smith-Waterman algorithm. This method provides magnificent speed up over than traditional sequential implementation methods while it sensitivity detection is still remained. To optimize the performance of the algorithm by exploiting parallelism in the design several techniques have been developed. In the advanced engineering technology, the massive parallelism can be implemented by using the Field Programmable Logic Array (FPGA) techniques. The design was developed in Verilog HDL coding and synthesis by using LINUX tools. From the LINUX tools, the optimum combination of parameten is manipulated to produce the most energy efficient IC. The design produces an ASIC that can work at 5ns until tons clock period and range of ICC time between 0.63ns until l.67ns. The area of this design is 10304.358mm2
format Article
author Mahmod, Nurzaima
spellingShingle Mahmod, Nurzaima
Design and analysis of high performance matrix filling for DNA sequence alignment accelerator using asic design flow: article / Nurzaima Mahmod
author_facet Mahmod, Nurzaima
author_sort Mahmod, Nurzaima
title Design and analysis of high performance matrix filling for DNA sequence alignment accelerator using asic design flow: article / Nurzaima Mahmod
title_short Design and analysis of high performance matrix filling for DNA sequence alignment accelerator using asic design flow: article / Nurzaima Mahmod
title_full Design and analysis of high performance matrix filling for DNA sequence alignment accelerator using asic design flow: article / Nurzaima Mahmod
title_fullStr Design and analysis of high performance matrix filling for DNA sequence alignment accelerator using asic design flow: article / Nurzaima Mahmod
title_full_unstemmed Design and analysis of high performance matrix filling for DNA sequence alignment accelerator using asic design flow: article / Nurzaima Mahmod
title_sort design and analysis of high performance matrix filling for dna sequence alignment accelerator using asic design flow: article / nurzaima mahmod
url https://ir.uitm.edu.my/id/eprint/106561/1/106561.pdf
https://ir.uitm.edu.my/id/eprint/106561/
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