An optimized cluster head selection in heterogeneous wireless sensor network wsn for internet of things iot
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Abstract
Wireless Sensor Network (WSN) constitutes numerous distributed
newlinesensors for monitoring physical or environmental conditions such as pressure,
newlinetemperature, sound, and so on and cooperatively transferring their collected
newlineinformation through the network towards the main location. WSNs are
newlineutilized in a lot of applications. WSN contains multiple nodes in which every
newlinenode can link with other sensors. Internet of Things (IoT) is defined as a
newlinenetwork of physical objects like sensors embedded with software, network
newlineconnectivity, and electronics, which permits the physical entities to gather and
newlineexchange data amongst themselves. IoT has many applications in the
newlineenvironment, transport management, health monitoring, automation, cities,
newlinehomes, target tracking, and routing. These IoT applications are made possible
newlinebecause of the sensor node deployment that constantly monitors the
newlinesurrounding entities and environment, gathers and transmits the sensed data as
newlineper the IoT application requirement.
newlineEnhancement of WSN scalability and energy-efficiency has been
newlinedemonstrated with the use of clustering-based or hierarchical-based routing
newlineapproaches. In this work, evaluates the Low Energy Adaptive Clustering
newlineHierarchy (LEACH), the Three-Layered LEACH (TL-LEACH) protocol and
newlineHeterogeneous-LEACH (LEACH-HPR) protocols. LEACH is a self-organized
newlineclustering algorithm that distributes energy usage amongst the networkand#8223;s
newlinesensors. The sensors are organized into local networks in this algorithm.
newlineTL-LEACH protocol that employs the Power-Efficient Gathering in Sensor
newlineInformation Systems (PEGASIS) protocol concept for enhancing LEACH
newline