Scalable and Secure Big Data IoT System Based on Multifactor Authentication and Lightweight Cryptography

Organizations share an evolving interest in adopting a cloud computing approach for Internet of Things (IoT) applications. Integrating IoT devices and cloud computing technology is considered as an effective approach to storing and managing the enormous amount of data generated by various devices. H...

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Main Authors: Saleh Atiewi, Amer Al-Rahayfeh, Muder Almiani, Salman Yussof, Omar Alfandi, Ahed Abugabah, Yaser Jararweh
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9118946/
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spelling doaj-92647e4971c14d41b1823c13191d08402021-03-30T02:46:06ZengIEEEIEEE Access2169-35362020-01-01811349811351110.1109/ACCESS.2020.30028159118946Scalable and Secure Big Data IoT System Based on Multifactor Authentication and Lightweight CryptographySaleh Atiewi0Amer Al-Rahayfeh1Muder Almiani2Salman Yussof3Omar Alfandi4https://orcid.org/0000-0002-9581-401XAhed Abugabah5https://orcid.org/0000-0002-3181-5822Yaser Jararweh6https://orcid.org/0000-0002-4403-3846Department of Computer Science, Al-Hussein Bin Talal University, Ma’an, JordanDepartment of Computer Science, Al-Hussein Bin Talal University, Ma’an, JordanDepartment of Computer Information Systems, Al-Hussein Bin Talal University, Ma’an, JordanDepartment of System and Networking, Tenaga National University, Kajang, MalaysiaCollege of Technological Innovation, Zayed University, Abu Dhabi, United Arab EmiratesCollege of Technological Innovation, Zayed University, Abu Dhabi, United Arab EmiratesDepartment of Computer Science, Jordan University of Science and Technology, Irbid, JordanOrganizations share an evolving interest in adopting a cloud computing approach for Internet of Things (IoT) applications. Integrating IoT devices and cloud computing technology is considered as an effective approach to storing and managing the enormous amount of data generated by various devices. However, big data security of these organizations presents a challenge in the IoT-cloud architecture. To overcome security issues, we propose a cloud-enabled IoT environment supported by multifactor authentication and lightweight cryptography encryption schemes to protect big data system. The proposed hybrid cloud environment is aimed at protecting organizations' data in a highly secure manner. The hybrid cloud environment is a combination of private and public cloud. Our IoT devices are divided into sensitive and nonsensitive devices. Sensitive devices generate sensitive data, such as healthcare data; whereas nonsensitive devices generate nonsensitive data, such as home appliance data. IoT devices send their data to the cloud via a gateway device. Herein, sensitive data are split into two parts: one part of the data is encrypted using RC6, and the other part is encrypted using the Fiestel encryption scheme. Nonsensitive data are encrypted using the Advanced Encryption Standard (AES) encryption scheme. Sensitive and nonsensitive data are respectively stored in private and public cloud to ensure high security. The use of multifactor authentication to access the data stored in the cloud is also proposed. During login, data users send their registered credentials to the Trusted Authority (TA). The TA provides three levels of authentication to access the stored data: first-level authentication - read file, second-level authentication - download file, and third-level authentication - download file from the hybrid cloud. We implement the proposed cloud-IoT architecture in the NS3 network simulator. We evaluated the performance of the proposed architecture using metrics such as computational time, security strength, encryption time, and decryption time.https://ieeexplore.ieee.org/document/9118946/Big datacloud computingInternet of Thingsmultilevel authenticationlightweight cryptography
collection DOAJ
language English
format Article
sources DOAJ
author Saleh Atiewi
Amer Al-Rahayfeh
Muder Almiani
Salman Yussof
Omar Alfandi
Ahed Abugabah
Yaser Jararweh
spellingShingle Saleh Atiewi
Amer Al-Rahayfeh
Muder Almiani
Salman Yussof
Omar Alfandi
Ahed Abugabah
Yaser Jararweh
Scalable and Secure Big Data IoT System Based on Multifactor Authentication and Lightweight Cryptography
IEEE Access
Big data
cloud computing
Internet of Things
multilevel authentication
lightweight cryptography
author_facet Saleh Atiewi
Amer Al-Rahayfeh
Muder Almiani
Salman Yussof
Omar Alfandi
Ahed Abugabah
Yaser Jararweh
author_sort Saleh Atiewi
title Scalable and Secure Big Data IoT System Based on Multifactor Authentication and Lightweight Cryptography
title_short Scalable and Secure Big Data IoT System Based on Multifactor Authentication and Lightweight Cryptography
title_full Scalable and Secure Big Data IoT System Based on Multifactor Authentication and Lightweight Cryptography
title_fullStr Scalable and Secure Big Data IoT System Based on Multifactor Authentication and Lightweight Cryptography
title_full_unstemmed Scalable and Secure Big Data IoT System Based on Multifactor Authentication and Lightweight Cryptography
title_sort scalable and secure big data iot system based on multifactor authentication and lightweight cryptography
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description Organizations share an evolving interest in adopting a cloud computing approach for Internet of Things (IoT) applications. Integrating IoT devices and cloud computing technology is considered as an effective approach to storing and managing the enormous amount of data generated by various devices. However, big data security of these organizations presents a challenge in the IoT-cloud architecture. To overcome security issues, we propose a cloud-enabled IoT environment supported by multifactor authentication and lightweight cryptography encryption schemes to protect big data system. The proposed hybrid cloud environment is aimed at protecting organizations' data in a highly secure manner. The hybrid cloud environment is a combination of private and public cloud. Our IoT devices are divided into sensitive and nonsensitive devices. Sensitive devices generate sensitive data, such as healthcare data; whereas nonsensitive devices generate nonsensitive data, such as home appliance data. IoT devices send their data to the cloud via a gateway device. Herein, sensitive data are split into two parts: one part of the data is encrypted using RC6, and the other part is encrypted using the Fiestel encryption scheme. Nonsensitive data are encrypted using the Advanced Encryption Standard (AES) encryption scheme. Sensitive and nonsensitive data are respectively stored in private and public cloud to ensure high security. The use of multifactor authentication to access the data stored in the cloud is also proposed. During login, data users send their registered credentials to the Trusted Authority (TA). The TA provides three levels of authentication to access the stored data: first-level authentication - read file, second-level authentication - download file, and third-level authentication - download file from the hybrid cloud. We implement the proposed cloud-IoT architecture in the NS3 network simulator. We evaluated the performance of the proposed architecture using metrics such as computational time, security strength, encryption time, and decryption time.
topic Big data
cloud computing
Internet of Things
multilevel authentication
lightweight cryptography
url https://ieeexplore.ieee.org/document/9118946/
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