Study on Security Improvement with Transmission of Aggregated Data Through Hamilton Clustering Protocol

M. Bobby, D. Usha
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引用次数: 1

Abstract

WSN (Wireless Sensor Network) is a network of devices that can perform data transmission from an analyzed field via wireless links. Thus, secure data transfer is needed to ensure correct data transmission from source nodes to the destination node as data passes via numerous intermediate nodes. It is significant to confirm that the network is free from malicious nodes to securely transfer the data in WSN, thereby achieving a reliable transmission. This study aims to form a cluster-based topology and then perform energy-based clustering by the proposed Hamilton Theory-based Clustering (HTC). As security is in WSN, Multicast Asymmetric Encryption (MAE) and decryption are employed. The high density of nodes makes it sense the same data repeatedly, leading to energy loss and minimized network lifetime. To solve this issue, the study introduced Algebraic Model-based Data Aggregation (AM-DA). Performance analysis is also assumed to assess the efficiency of the proposed methods.
利用Hamilton聚类协议提高聚合数据传输安全性的研究
WSN(无线传感器网络)是一种设备网络,可以通过无线链路从被分析的领域执行数据传输。因此,当数据经过众多中间节点时,需要安全的数据传输,以确保从源节点到目的节点的数据传输正确。在无线传感器网络中,确保网络中没有恶意节点的存在对数据的安全传输,实现数据的可靠传输具有重要意义。本研究旨在通过提出的基于Hamilton理论的聚类(HTC),形成基于簇的拓扑结构,然后进行基于能量的聚类。由于无线传感器网络的安全性要求,采用了组播非对称加密和解密技术。节点的高密度使得重复感知相同的数据,从而导致能量损失和最小化网络生命周期。为了解决这一问题,本研究引入了基于代数模型的数据聚合(AM-DA)。性能分析也被假定来评估所提出的方法的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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