A Secure Energy-Aware Game Theory (SEGaT) Mechanism for Coordination in WSANs

A Secure Energy-Aware Game Theory (SEGaT) Mechanism for Coordination in WSANs

Vishal Jagota, Monica Luthra, Jyoti Bhola, Ashutosh Sharma, Mohammad Shabaz
Copyright: © 2022 |Pages: 16
DOI: 10.4018/IJSIR.287549
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Abstract

A novel secure energy aware game theory (SEGaT) method has proposed to have better coordination in wireless sensor actor networks. An actor has a cluster of sensor nodes which is required to perform different action based on the need that emerge in the network individually or sometime with coordination from other actors. The method has different stages for the fulfilment of these actions. Based on energy aware actor selection (EAAS), selection of number of actors and their approach is the initial step followed by the selection of best team of sensors with each actor to carry out the action and lastly the selection of reliable node within that team to finally nail the action into place in the network for its smooth working and minimum compromise in the energy The simulations are done in MATLAB and result of the energy and the packet delivery ratio are compared with game theory (GaT) and real time energy constraint (RTEC) method. The proposed protocol performs better in terms of energy consumption, packet delivery ratio as compared to its competitive protocols.
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In WSANs, countless sensor nodes, i.e., on the demand of hundreds or thousands, are arbitrarily thrown in an objective region to play out a cooperative sensing undertaking. Such a broad sending is normally a bit much for actor sensor nodes, since performers are refined gadgets with superior capacities that can follow up on expansive regions. The shared task makes the sensor nodes more powerful with dispersed sensing of all physical happenings. Following sensors identify a juncture occurrence in the earth; the occasional data is discontinuously organized and relayed to the performing actors, which accumulates, develops, and in the end remake the occasional data. We allude to the way toward setting up information ways among sensors and performers as sensor-actor coordination. When an occasion has been distinguished, the actors arrange with one another to settle on a choice on nearly all proper approach to play out the activity. We allude to this procedure as actor performer coordination. Subsequently, the work that WSAN does can be thought of as which is done on discrete intervals, choice, and acting circle. WSANs can be a vital piece of frameworks, for example, war zone observation, atomic, organic or concoction assault recognition, home computerization and ecological checking (Akyildiz and Kasimoglu, 2004). For instance, in flame location uses, sensors can transfer the correct origin and intensity of the fire to the water pump or other water activity performing actors with the goal of shutting off the dangerous fire undoubtedly and be smothered prior to its spread. So also, movement and luminance sensors in a construction can recognize the nearness of interlopers, and direction cameras or different equipments to follow them. Moreover, sensors for auxiliary wellbeing observing in aircrafts or space shuttles can drive equipments to auspicious take actions which are against basic mechanical pressure or basic flaws. As a final precedent, in quake situations sensors can facilitate to find survivors and lead robots doing recoup tasks.

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