New Approach for Channel Encoding and Decoding Using (8,4) Extended Hamming Code

dc.contributor.authorMushfick, M. M. M.
dc.contributor.authorPuspatheepan, A.
dc.contributor.authorDe Silva, Dilanka
dc.date.accessioned2026-05-19T04:55:20Z
dc.date.issued2020
dc.description.abstractIn this paper, the Channel Encoding and Decoding process is implemented using the (8,4) Extended Hamming code, in Quartus II 13.0 design software through VHDL program ming language and ModelSim-Altera software for simulating the circuit designs. With a minimum Hamming distance of four, Single-Error Correction and Double-Error Detection (SEC DED) can be achieved. Dissipation of power through heat and high processing time are the major shortcomings of using non reversible logic gates. The combinational logic gate designs are built using reversible logic to reduce dissipation of heat and processing delay. FPGAs are preferred over micro-controllers for the implementation of the designs, due to low signal processing latency and high parallel processing capability. The detection and correction of errors is achieved by following a new effective concept/algorithm to achieve SEC-DED at the decoder. The hardware implementation of the prototype was done using the Altera DE0-Nano FPGA board
dc.identifier.citationMushfick, M. M. M., Puspatheepan, A., & De Silva, Dilanka. (2020). New Approach for Channel Encoding and Decoding Using (8,4) Extended Hamming Code. Sri Lanka Technology Campus, Padukka, Sri Lanka.
dc.identifier.facultyFaculty of Engineering
dc.identifier.urihttps://res.sltc.ac.lk/handle/789/55
dc.language.isoen
dc.publisherSri Lanka Technology Campus
dc.subjectCheck-Bits Generator (CBG)
dc.subjectDouble Bit Error (DBE)
dc.subjectError Detection and Correction(EDC)
dc.subjectGarbage Output
dc.subjectReversible gates
dc.subjectSingle Bit Error (SBE)
dc.subjectVHSIC Hardware Description Language (VHDL)
dc.titleNew Approach for Channel Encoding and Decoding Using (8,4) Extended Hamming Code
dc.typeArticle

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