Design of encoder and decoder using reversible logic gates
The digital modules are the building block of all the applications in digital world. Encoders and decoders play a vital role in numerous applications. The Encoder - Decoder framework is a major stream deep learning design for all computing applications. The ''encoder'' uses a dee...
Main Authors: | , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Elsevier
2024-02-01
|
Series: | Measurement: Sensors |
Subjects: | |
Online Access: | http://www.sciencedirect.com/science/article/pii/S2665917423003252 |
_version_ | 1797345918178033664 |
---|---|
author | C. Kalamani R. Murugasami S. Usha S. Saravanakumar |
author_facet | C. Kalamani R. Murugasami S. Usha S. Saravanakumar |
author_sort | C. Kalamani |
collection | DOAJ |
description | The digital modules are the building block of all the applications in digital world. Encoders and decoders play a vital role in numerous applications. The Encoder - Decoder framework is a major stream deep learning design for all computing applications. The ''encoder'' uses a deep convolutional network to encode hierarchical data into feature maps, whereas the ''decoder'' uses encoded features to create efficient dense forecasts. The Encoder - Decoder platform's core principle is to understand data first and then forecast segmentation depending on the interpretation of the data. Reversible gates are the blooming technique now a day as they are really useful in reducing the power consumption.When the components are implemented using these gates it gives the optimized result. By analyzing the working of encoders and decoders, 8x3 encoder and decoder, hamming encoder, decoder are proposed using reversible gates. Their functionality is verified and power is obtained using Xilinx and Cadence tools. The proposed method of encoder and decoder show improvement, when compared with the existing designs. |
first_indexed | 2024-03-08T11:24:43Z |
format | Article |
id | doaj.art-6bba92170e534bad840c362a42468947 |
institution | Directory Open Access Journal |
issn | 2665-9174 |
language | English |
last_indexed | 2024-03-08T11:24:43Z |
publishDate | 2024-02-01 |
publisher | Elsevier |
record_format | Article |
series | Measurement: Sensors |
spelling | doaj.art-6bba92170e534bad840c362a424689472024-01-26T05:34:58ZengElsevierMeasurement: Sensors2665-91742024-02-0131100989Design of encoder and decoder using reversible logic gatesC. Kalamani0R. Murugasami1S. Usha2S. Saravanakumar3Department of ECE, Tamilnadu College of Engineering, Coimbatore, Tamilnadu, India; Corresponding author.Department of ECE, Nandha Engineering College, Erode, Tamilnadu, IndiaDepartment of EEE, Kongu Engineering College, Perundurai, Tamilnadu, IndiaDepartment of EIE, Kumaraguru College of Technology (KCT), Coimbatore, Tamilnadu, IndiaThe digital modules are the building block of all the applications in digital world. Encoders and decoders play a vital role in numerous applications. The Encoder - Decoder framework is a major stream deep learning design for all computing applications. The ''encoder'' uses a deep convolutional network to encode hierarchical data into feature maps, whereas the ''decoder'' uses encoded features to create efficient dense forecasts. The Encoder - Decoder platform's core principle is to understand data first and then forecast segmentation depending on the interpretation of the data. Reversible gates are the blooming technique now a day as they are really useful in reducing the power consumption.When the components are implemented using these gates it gives the optimized result. By analyzing the working of encoders and decoders, 8x3 encoder and decoder, hamming encoder, decoder are proposed using reversible gates. Their functionality is verified and power is obtained using Xilinx and Cadence tools. The proposed method of encoder and decoder show improvement, when compared with the existing designs.http://www.sciencedirect.com/science/article/pii/S2665917423003252Reversible gateEncoderDecoderBCD decoderComputingHamming encoder |
spellingShingle | C. Kalamani R. Murugasami S. Usha S. Saravanakumar Design of encoder and decoder using reversible logic gates Measurement: Sensors Reversible gate Encoder Decoder BCD decoder Computing Hamming encoder |
title | Design of encoder and decoder using reversible logic gates |
title_full | Design of encoder and decoder using reversible logic gates |
title_fullStr | Design of encoder and decoder using reversible logic gates |
title_full_unstemmed | Design of encoder and decoder using reversible logic gates |
title_short | Design of encoder and decoder using reversible logic gates |
title_sort | design of encoder and decoder using reversible logic gates |
topic | Reversible gate Encoder Decoder BCD decoder Computing Hamming encoder |
url | http://www.sciencedirect.com/science/article/pii/S2665917423003252 |
work_keys_str_mv | AT ckalamani designofencoderanddecoderusingreversiblelogicgates AT rmurugasami designofencoderanddecoderusingreversiblelogicgates AT susha designofencoderanddecoderusingreversiblelogicgates AT ssaravanakumar designofencoderanddecoderusingreversiblelogicgates |