Phase-Image-Encryption-Based Elliptic Curve and Double-Random-Phase Encoding

In this paper, we proposed an enhanced asymmetric cryptosystem scheme for image encryption using a combination of Elliptic Curve and Fourier transformations. Our proposed encryption and decryption process is highly secure with a smaller key size compared to other schemes due to the use of Elliptic C...

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Main Authors: Arabind Kumar, Sanjay Yadav, Tarul Garg
Format: Article
Language:English
Published: MDPI AG 2024-01-01
Series:Engineering Proceedings
Subjects:
Online Access:https://www.mdpi.com/2673-4591/59/1/155
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author Arabind Kumar
Sanjay Yadav
Tarul Garg
author_facet Arabind Kumar
Sanjay Yadav
Tarul Garg
author_sort Arabind Kumar
collection DOAJ
description In this paper, we proposed an enhanced asymmetric cryptosystem scheme for image encryption using a combination of Elliptic Curve and Fourier transformations. Our proposed encryption and decryption process is highly secure with a smaller key size compared to other schemes due to the use of Elliptic Curve Cryptography. The experimental results prove that the image-encryption scheme proposed in this research is effective and has strong anti-attack and key sensitivity. Computer-based simulations have been performed for this scheme to complete the measurable examination utilizing histograms plots, and correlation distribution of adjacent pixels. Moreover, the security of this encryption scheme relies on Elliptic Curve Cryptography, which has high security. The validation of the scheme is shown using a grayscale image and all the computations are performed in MATLAB (R2021a). The security against several attacks like noise is also shown.
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issn 2673-4591
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series Engineering Proceedings
spelling doaj-art-b59b013db95246ab924cc2f3c77e862c2025-08-20T03:43:30ZengMDPI AGEngineering Proceedings2673-45912024-01-0159115510.3390/engproc2023059155Phase-Image-Encryption-Based Elliptic Curve and Double-Random-Phase EncodingArabind Kumar0Sanjay Yadav1Tarul Garg2Department of Applied Sciences, The Northcap University, Gurugram 122017, Haryana, IndiaPW-Institute of Innovation, Bengaluru 560049, Karnataka, IndiaDepartment of Applied Sciences, The Northcap University, Gurugram 122017, Haryana, IndiaIn this paper, we proposed an enhanced asymmetric cryptosystem scheme for image encryption using a combination of Elliptic Curve and Fourier transformations. Our proposed encryption and decryption process is highly secure with a smaller key size compared to other schemes due to the use of Elliptic Curve Cryptography. The experimental results prove that the image-encryption scheme proposed in this research is effective and has strong anti-attack and key sensitivity. Computer-based simulations have been performed for this scheme to complete the measurable examination utilizing histograms plots, and correlation distribution of adjacent pixels. Moreover, the security of this encryption scheme relies on Elliptic Curve Cryptography, which has high security. The validation of the scheme is shown using a grayscale image and all the computations are performed in MATLAB (R2021a). The security against several attacks like noise is also shown.https://www.mdpi.com/2673-4591/59/1/155Elliptic Curve Cryptographyimage encryptionFourier transformationencodingsecurity
spellingShingle Arabind Kumar
Sanjay Yadav
Tarul Garg
Phase-Image-Encryption-Based Elliptic Curve and Double-Random-Phase Encoding
Engineering Proceedings
Elliptic Curve Cryptography
image encryption
Fourier transformation
encoding
security
title Phase-Image-Encryption-Based Elliptic Curve and Double-Random-Phase Encoding
title_full Phase-Image-Encryption-Based Elliptic Curve and Double-Random-Phase Encoding
title_fullStr Phase-Image-Encryption-Based Elliptic Curve and Double-Random-Phase Encoding
title_full_unstemmed Phase-Image-Encryption-Based Elliptic Curve and Double-Random-Phase Encoding
title_short Phase-Image-Encryption-Based Elliptic Curve and Double-Random-Phase Encoding
title_sort phase image encryption based elliptic curve and double random phase encoding
topic Elliptic Curve Cryptography
image encryption
Fourier transformation
encoding
security
url https://www.mdpi.com/2673-4591/59/1/155
work_keys_str_mv AT arabindkumar phaseimageencryptionbasedellipticcurveanddoublerandomphaseencoding
AT sanjayyadav phaseimageencryptionbasedellipticcurveanddoublerandomphaseencoding
AT tarulgarg phaseimageencryptionbasedellipticcurveanddoublerandomphaseencoding