Fractional chaotic maps based short signature scheme under human-centered IoT environments

Introduction: The Internet of Things (IoT) comprises of various smart devices for the sharing of sensed data through online services. People will be directly contacted to check their health parameters and the reports will be collected centrally through smart devices. The requirement is protection of...

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Main Authors: Chandrashekhar Meshram, Rabha W. Ibrahim, Ahmed J. Obaid, Sarita Gajbhiye Meshram, Akshaykumar Meshram, Alaa Mohamed Abd El-Latif
Format: Article
Language:English
Published: Elsevier 2021-09-01
Series:Journal of Advanced Research
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2090123220302010
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author Chandrashekhar Meshram
Rabha W. Ibrahim
Ahmed J. Obaid
Sarita Gajbhiye Meshram
Akshaykumar Meshram
Alaa Mohamed Abd El-Latif
author_facet Chandrashekhar Meshram
Rabha W. Ibrahim
Ahmed J. Obaid
Sarita Gajbhiye Meshram
Akshaykumar Meshram
Alaa Mohamed Abd El-Latif
author_sort Chandrashekhar Meshram
collection DOAJ
description Introduction: The Internet of Things (IoT) comprises of various smart devices for the sharing of sensed data through online services. People will be directly contacted to check their health parameters and the reports will be collected centrally through smart devices. The requirement is protection of messages during the exchange of data between sender and receiver in order to tackle human malicious attacks. Various signature-based schemes are discussed in the literature to provide secure communication. Smart devices however require lightweight tasks by ensuring critical safety strengths. An important problem in the signature based method is that it incurs more computational expenses for signing and verification process in large numbers. Objectives: In this study, we introduced an efficient Short Signature Scheme (SSS) that uses Fractional Chaotic Map (FCM) for secure communication in IoT based smart devices, the security of which is closely related to a random oracle based on FCM assumption. Methods: In this study, we have designed new short signature scheme using FCM. The presented scheme consist of four sub-algorithm as follows: setup, key generation, signing and verification. We have used less rigorous operations based on the FCM to carry out signing and verification procedures, similar to human signing on valid documents and then verifying them as per witness. Results: The proposed SSS offers a better security assurance than currently established signature schemes. The key advantage of the SSS over the DSA schemes is that at the verification stage and signing period it takes less computation; it retains the degree of protection. The presented SSS takes less bandwidth for storage, communication, and computing resources; particularly applicable to wireless devices and smart cards. Conclusion: We concluded that the uses of fractional chaotic maps is more effective for secure communication in human-centered IoT to present a provably secure short signature technique.
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spelling doaj.art-c845190f6f2a48dd8e6e8ef6f8e2b8e22022-12-21T18:34:09ZengElsevierJournal of Advanced Research2090-12322021-09-0132139148Fractional chaotic maps based short signature scheme under human-centered IoT environmentsChandrashekhar Meshram0Rabha W. Ibrahim1Ahmed J. Obaid2Sarita Gajbhiye Meshram3Akshaykumar Meshram4Alaa Mohamed Abd El-Latif5Department of Post Graduate Studies and Research in Mathematics, Jayawanti Haksar Government Post Graduation College, College of Barkatullah Vishwavidyalaya, Betul, M.P. 460001, India; Corresponding author.Informetrics Research Group, Ton Duc Thang University, Ho Chi Minh City, Viet Nam; Faculty of Mathematics & Statistics, Ton Duc Thang University, Ho Chi Minh City, Viet NamDepartment of Computer Science, Faculty of Computer Science and Mathematics, University of Kufa, IraqDepartment for Management of Science and Technology Development, Ton Duc Thang University, Ho Chi Minh City, Viet Nam; Faculty of Environment and Labour Safety, Ton Duc Thang University, Ho Chi Minh City, Viet NamDepartment of Applied Mathematics, Yeshwantrao Chavan College of Engineering, Nagpur, M.S., IndiaDepartment of Mathematics, Faculty of Education, Ain Shams University, Roxy, Cairo, Egypt; Department of Mathematics, Faculty of Arts and Science, Northern Border University, Rafha, Saudi ArabiaIntroduction: The Internet of Things (IoT) comprises of various smart devices for the sharing of sensed data through online services. People will be directly contacted to check their health parameters and the reports will be collected centrally through smart devices. The requirement is protection of messages during the exchange of data between sender and receiver in order to tackle human malicious attacks. Various signature-based schemes are discussed in the literature to provide secure communication. Smart devices however require lightweight tasks by ensuring critical safety strengths. An important problem in the signature based method is that it incurs more computational expenses for signing and verification process in large numbers. Objectives: In this study, we introduced an efficient Short Signature Scheme (SSS) that uses Fractional Chaotic Map (FCM) for secure communication in IoT based smart devices, the security of which is closely related to a random oracle based on FCM assumption. Methods: In this study, we have designed new short signature scheme using FCM. The presented scheme consist of four sub-algorithm as follows: setup, key generation, signing and verification. We have used less rigorous operations based on the FCM to carry out signing and verification procedures, similar to human signing on valid documents and then verifying them as per witness. Results: The proposed SSS offers a better security assurance than currently established signature schemes. The key advantage of the SSS over the DSA schemes is that at the verification stage and signing period it takes less computation; it retains the degree of protection. The presented SSS takes less bandwidth for storage, communication, and computing resources; particularly applicable to wireless devices and smart cards. Conclusion: We concluded that the uses of fractional chaotic maps is more effective for secure communication in human-centered IoT to present a provably secure short signature technique.http://www.sciencedirect.com/science/article/pii/S2090123220302010Fractional chaotic mapChaotic systemsShort signature schemeInternet of Things (IoT)ConfidentialityProbability security analysis
spellingShingle Chandrashekhar Meshram
Rabha W. Ibrahim
Ahmed J. Obaid
Sarita Gajbhiye Meshram
Akshaykumar Meshram
Alaa Mohamed Abd El-Latif
Fractional chaotic maps based short signature scheme under human-centered IoT environments
Journal of Advanced Research
Fractional chaotic map
Chaotic systems
Short signature scheme
Internet of Things (IoT)
Confidentiality
Probability security analysis
title Fractional chaotic maps based short signature scheme under human-centered IoT environments
title_full Fractional chaotic maps based short signature scheme under human-centered IoT environments
title_fullStr Fractional chaotic maps based short signature scheme under human-centered IoT environments
title_full_unstemmed Fractional chaotic maps based short signature scheme under human-centered IoT environments
title_short Fractional chaotic maps based short signature scheme under human-centered IoT environments
title_sort fractional chaotic maps based short signature scheme under human centered iot environments
topic Fractional chaotic map
Chaotic systems
Short signature scheme
Internet of Things (IoT)
Confidentiality
Probability security analysis
url http://www.sciencedirect.com/science/article/pii/S2090123220302010
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