An Energy Efficient Localization of the Sensory Nodes based on Secure Routing Protocol for Underwater Network

Author(s):  
Pushpendra R Verma ◽  
Amit Kumar ◽  
Rakesh Ranjan
2019 ◽  
Vol 01 (02) ◽  
pp. 87-102 ◽  
Author(s):  
Jennifer S. Raj ◽  
Smys S ◽  
Abul Bashar

The advanced progress in wireless communication pays attention on information of more sensitivity to be delivered to its destined end with numerous of restrains, such as reliableness, constancy, response time and safety. The advancements in digital gadgetry, the usage of unwired transceivers and microcontrollers has made viable the integration of sensing and computing device with transceivers and power units to form a single unit called sensor nodes, the enveloping of sensor nodes form wireless sensor nodes. Innumerable existing proposals have aimed at the energy efficient and secure transmission of data but have achieved any one at the cost of the other. Noting down the issues of the existing method this paper proposes an energy efficient multi-tier sustainable secure routing protocol (EEMSR) for mobile wireless sensor nodes which is a cohabit of multi-tier secure routing with an AL (Ant Lion) optimizer (CoMSR-ALO) along with the prime curve cryptography supported by the routing formed in spherical structure. This better encryption and decryption method takes the edge of power consumption and offers control over the utilization of energy which is difficult to be achieved when dispatching the pack and also avoids the intervention of the encroacher and improves the security and minimizes the deprivation caused due the information lost.


Energies ◽  
2019 ◽  
Vol 12 (21) ◽  
pp. 4174 ◽  
Author(s):  
Khalid Haseeb ◽  
Ahmad Almogren ◽  
Naveed Islam ◽  
Ikram Ud Din ◽  
Zahoor Jan

Due to the advancement of information and communication technologies, the use of Internet of Things (IoT) devices has increased exponentially. In the development of IoT, wireless sensor networks (WSNs) perform a vital part and comprises of low-cost smart devices for information gathering. However, such smart devices have constraints in terms of computation, processing, memory and energy resources. Along with such constraints, one of the fundamental challenges for WSN is to achieve reliability with the security of transmitted data in a vulnerable environment against malicious nodes. This paper aims to develop an energy-efficient and secure routing protocol (ESR) for intrusion avoidance in IoT based on WSN to increase the network period and data trustworthiness. Firstly, the proposed protocol creates different energy-efficient clusters based on the intrinsic qualities of nodes. Secondly, based on the (k,n) threshold-based Shamir secret sharing scheme, the reliability and security of the sensory information among the base station (BS) and cluster head are achieved. The proposed security scheme presents a light-weight solution to cope with intrusions generated by malicious nodes. The experimental results using the network simulator (NS-2) demonstrate that the proposed routing protocol achieved improvement in terms of network lifetime as 37%, average end-to-end delay as 24%, packet delivery ratio as 30%, average communication cost as 29%, network overhead as 28% and the frequency of route re-discoveries as 38% when compared with the existing work under dynamic network topologies.


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