An Energy-Aware, Highly Available, and Fault-Tolerant Method for Reliable IoT Systems
Autor: | Mamoona Naveed Asghar, Abdul Muin Abdul Rahman, Muhammad Bukhsh, Saima Abdullah, Humaira Arshad, Abdulatif Alabdulatif |
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Jazyk: | angličtina |
Rok vydání: | 2021 |
Předmět: |
Routing protocol
General Computer Science Network packet business.industry Wireless network Computer science Node (networking) availability General Engineering TK1-9971 Energy efficiency Backup IoT systems General Materials Science The Internet fault tolerance Electrical engineering. Electronics. Nuclear engineering business wireless sensor networks Wireless sensor network Computer network Efficient energy use |
Zdroj: | IEEE Access, Vol 9, Pp 145363-145381 (2021) |
ISSN: | 2169-3536 |
Popis: | The Internet of Things (IoT) is one of the highly influencing and promising technologies of today’s world, consisting of sensor devices. The internet smoothly changes from an internet of people towards an Internet of Things (IoT), which allows different things and objects to connect wirelessly. Things and objects are grouped into IoT subgroups in the IoT system, which are called clusters, and each cluster is controlled by a central authority and checked by the broker’s help. A concept of keeping backup data is used to increase the lifespan of IoT subgroups by avoiding re-clustering overhead for smooth transmission of packets and increasing availability concerns. A novel approach is used for the selection of cluster head/broker and backup nodes simultaneously. Cluster head and Backup Storage Point node (BSP) remain the same unless and until the residual power of the broker/cluster head is greater than the threshold energy. A novel Energy Efficient Message scheduling algorithm EAAFTMS (An Energy-Aware Available and Fault-Tolerant System with Message Scheduling in IoT) is incorporated at broker node for smooth transmission of messages. This proposed approach is not only solving availability issues over the wireless network but also proved to be energy efficient by prolonging the battery-powered network lifetime. Simulation results prove EAAFTMS, many folds better than benchmark protocols. This system ensures fault-tolerant and available schemes for IoT systems while stabilizing the energy of the overall system. The results shown prove the effectiveness and efficiency of the proposed system. |
Databáze: | OpenAIRE |
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