A Fault-Tolerant Image Processor for Executing the Morphology Operations Based on a Nanoscale Technology
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Date
2023
Authors
Seyedi, Saeid
Navimipour, Nima Jafari
Journal Title
Journal ISSN
Volume Title
Publisher
Springer
Open Access Color
Green Open Access
No
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Publicly Funded
No
Abstract
The morphology algorithms are an exciting field that provides a powerful and unified method applied to image and video processing applications. Also, they have many advantages to give manageable hardware implementations and are widely employed as parts of image processing techniques. On the other hand, Quantum-dot Cellular Automata (QCA) is a promising and novel nanotechnology that contains notable benefits against common technologies in diverse features like extremely small size, low energy loss, and high operation frequency. Besides, schematizing circuits with no info loss or fault-tolerant might be beneficial in reducing power wastage. In the present paper, we suggest a novel fault-tolerant procedure to execute the morphology operations in digital image processing based on QCA. The mentioned fault-tolerant schematization for executing the morphology operations in digital image processing is easy to build. It contains notably lower elements than Complementary Metal Oxide Semiconductor (CMOS) design. Implementation and testing of all circuits are achieved using the QCADesigner tool. The suggested fault-tolerant circuit for morphological dilation/erosion operation attains high fault-tolerant in all cases of defects.
Description
Keywords
Image processing, Design, Nanotechnology, Quantum-dot cellular automata, Design, Morphology operations, Adder, Nano-Design, Adder, Fault-tolerant, Morphology operations, Design, Image processing, Adder, Nano-Design, Nanotechnology, Quantum-dot cellular automata, Fault-tolerant
Turkish CoHE Thesis Center URL
Fields of Science
0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology
Citation
WoS Q
Scopus Q
Q1

OpenCitations Citation Count
7
Source
Multimedia Tools and Applications
Volume
82
Issue
2
Start Page
2489
End Page
2502
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Scopus : 11
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Mendeley Readers : 3
SCOPUS™ Citations
11
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Web of Science™ Citations
9
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Page Views
5
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