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dc.contributor.authorDayana, Saiful Nurdin
dc.contributor.authorMohd. Nazrin, Md. Isa
dc.contributor.authorRizalafande, Che Ismail
dc.contributor.authorMuhammad Imran, Ahmad
dc.date.accessioned2020-12-31T01:24:35Z
dc.date.available2020-12-31T01:24:35Z
dc.date.issued2018
dc.identifier.citationMATEC Web of Conferences, vol.150, 2018, 6 pagesen_US
dc.identifier.issn2261-236X (online)
dc.identifier.urihttp://dspace.unimap.edu.my:80/xmlui/handle/123456789/69198
dc.descriptionLink to publisher's homepage at https://www.matec-conferences.org/en_US
dc.description.abstractThis paper presents a high performance systolic array (SA) core architecture design for Deoxyribonucleic Acid (DNA) sequencer. The core implements the affine gap penalty score Smith-Waterman (SW) algorithm. This time-consuming local alignment algorithm guarantees optimal alignment between DNA sequences, but it requires quadratic computation time when performed on standard desktop computers. The use of linear SA decreases the time complexity from quadratic to linear. In addition, with the exponential growth of DNA databases, the SA architecture is used to overcome the timing issue. In this work, the SW algorithm has been captured using Verilog Hardware Description Language (HDL) and simulated using Xilinx ISIM simulator. The proposed design has been implemented in Xilinx Virtex -6 Field Programmable Gate Array (FPGA) and improved in the core area by 90% reduction.en_US
dc.language.isoenen_US
dc.publisherEDP Sciencesen_US
dc.relation.ispartofseriesMalaysia Technical Universities Conference on Engineering and Technology (MUCET 2017);
dc.subjectSystolic array (SA)en_US
dc.subjectDeoxyribonucleic Acid (DNA)en_US
dc.subjectDNA sequenceren_US
dc.titleHigh performance systolic array core architecture design for DNA sequenceren_US
dc.typeArticleen_US
dc.identifier.doihttps://doi.org/10.1051/matecconf/201815006009
dc.contributor.urlnazrin@unimap.edu.myen_US


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