Efficient Routing Protocol with Localization and Cross Layer Approach for Load Balancing in UWSN
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Abstract
An Underwater Wireless Sensor Network (UWSN) is a network of
newlinespatially distributed autonomous underwater sensors that communicate with each
newlineother through wireless links to monitor and collect data from the underwater
newlineenvironment. The nodes in the sensor network have a wide range of uses, particularly
newlineon under-sea links that are skilled for detecting, handling, and management. The
newlineunderwater wireless sensor networks support collecting pollution data, mine surveys,
newlineoceanographic information collection, aided navigation, strategicsurveillance, and
newlineocean sample collection using submerged water detectors. The unique characteristics
newlineof the underwater environment, such as high attenuation,limited bandwidth, and
newlineunpredictable propagation conditions, present significantchallenges to the deployment
newlineand operation of UWSNs. In addition, localization, congestion routing, and traffic
newlineprioritizing are significant issues in an underwater sensor network.
newlineIn the research proposal, the various types of traffic are distinguished from
newlineone another, and each type of traffic is assigned its requirements, which are taken into
newlineconsideration concerning the resources available on the network. To reduce the
newlineamount of localization mistakes, the angle-based forwarding strategy that was
newlineproposed is utilized. The fitness function, which is derived based on packet delivary
newlineratio, energy, load buffer and distance among the nodes, is utilized by the proposed
newlinetechnique to select the path that presents the shortest distance to thedestination. The
newlinework that is being presented takes into consideration congestion- conscious
newlineforwarding by utilizing hard-stage and soft-stage schemes. These schemes alleviate
newlinecongestion by monitoring the status of the energy and buffer of the nodes and
newlineregulating the traffic
newline