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Cluster-Based Cross Layer-Cross Domain Routing Model with DNN-Based Energy Prediction

Shivaji R. Lahane and Priti S. Lahane
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Shivaji R. Lahane: Department of Computer Engineering, Gokhale Education Society’s R. H. SAPAT College of Engineering, Management Studies and Research, Nashik 422005, Maharashtra, India
Priti S. Lahane: Department of Information Technology, Mumbai Education Trust, Bhujbal Knowledge City, Institute of Engineering, Nashik 422003, Maharashtra, India

Journal of Information & Knowledge Management (JIKM), 2024, vol. 23, issue 03, 1-37

Abstract: In WSN, extending the network life is still a major problem that needs to be tackled. Cross-layer protocols are used to get around these problems. In this paper, a new cross-layer design routing model is presented using a clustering-based technique. The proposed model is proceeding with the optimal cluster-based routing model via a new algorithm. Initially during the network generation, the node’s energy is predicted by the deep learning model termed as DNN model on the basis of the distance between node and sink as the input. Subsequently, during the clustering process, the cluster head is optimally selected via a new optimisation algorithm named Self-Improved Shuffle Shepherd Optimisation (SISSO) Algorithm. The cluster head selection is done by considering the constraints including Link quality, Distance, Overhead, Energy and Delay. Finally, a Modified Kernel Least Mean Square (MKLMS)-based data aggregation process is to eliminate the redundant data transmission. The performance of the SISSO method is proven superior over other conventional approaches with regard to the alive node and network lifetime. In the alive node analysis of supernode, the proposed SISSO model achieves the maximal number of alive supernodes at 2,000 rounds (i.e. 0.67) than other conventional methods.

Keywords: Cross domain routing; energy prediction; optimisation; clustering; data aggregation (search for similar items in EconPapers)
Date: 2024
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DOI: 10.1142/S0219649224500369

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