M. Vijay Anand, Anand Krishnamurthy, Karuppiah Subramanian, Saravanan Raju
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引用次数: 0
摘要
城域网被广泛用于设备之间的交互,而无需依赖中央管理机构。网络拓扑结构的频繁变化使其面临各种安全漏洞。加强城域网内的安全性是最重要的问题,也是必须解决的问题。解决这些与安全相关的问题是确保城域网适当数据共享的唯一方法。目前已经引入了许多以安全为导向的技术,但也遇到了一些挑战,导致成本和时间复杂性增加。这些困难使得有必要分配更多资源来缓解问题和应对日益增长的复杂性,从而引入了一层复杂性,阻碍了无缝实施和功效的发挥。在这种情况下,我们提出了一种动态算法切换(DAS)算法来加强城域网的安全性。该过程从节点聚类开始,然后通过实施修改后的基于密度的应用空间聚类(DBSCAN)形成聚类。建议的方法包含簇头选择(CHS),这反过来又提高了城域网内的能源效率。通过实验评估了 DAS 方法的有效性,测量了数据包交付率(PDR)、端到端延迟、吞吐量 97.9、网络寿命和能耗等关键指标,结果分别为 98.7%、15.81mas、97.9% 952 s 和 11 J/s。而 ANFIS-EESC、QoSDSBS、EBR 和 IBADConBE 等现有方法的 PDR 分别为 98.3%、97.6%、97.1% 和 96.9%,性能有所下降。对比分析表明,所提出的方法在所有指标上都优于其他技术,从而确立了其卓越的效率。
Advancing security and efficiency in MANET using dynamic algorithm switching
MANET is widely utilized for interactions among devices without relying on a central governing body. The frequent changes in network topologies expose it to various security vulnerabilities. Enhancing security within MANET is of paramount concern and demands resolution. Addressing these security-related issues stands as the sole approach to ensuring proper data sharing in MANET. Numerous security-oriented techniques have been introduced, but they have encountered several challenges, leading to increased costs and time complexity. These difficulties have necessitated additional resources to be allocated towards mitigating issues and grappling with the growing complexity, thereby introducing a layer of complexity that can impede seamless implementation and efficacy. In this context, a Dynamic Algorithm Switching (DAS) algorithm is proposed to strengthen security in MANET. The process begins with Node clustering, followed by cluster formation through the implementation of the Modified Density-Based Spatial Clustering of Applications (DBSCAN). The proposed method incorporates Cluster Head selection (CHS), which in turn enhances energy efficiency within MANET. The effectiveness of the DAS method is evaluated through experimentation, measuring key aspects such as Packet Delivery Ratio (PDR), end-to-end delay, throughput97.9, network lifetime, and energy consumption with the attained values 98.7%, 15.81mas, 97.9% 952 s as well as 11 J/s respectively. However the existing approaches such as ANFIS-EESC, QoSDSBS, EBR and IBADConBE achieved rate of PDR as 98.3%, 97.6%, 97.1% and 96.9% that diminished the performance. Comparative analysis demonstrates that the proposed method outperforms other techniques across all metrics, establishing its superior efficiency.
期刊介绍:
The aim of the Peer-to-Peer Networking and Applications journal is to disseminate state-of-the-art research and development results in this rapidly growing research area, to facilitate the deployment of P2P networking and applications, and to bring together the academic and industry communities, with the goal of fostering interaction to promote further research interests and activities, thus enabling new P2P applications and services. The journal not only addresses research topics related to networking and communications theory, but also considers the standardization, economic, and engineering aspects of P2P technologies, and their impacts on software engineering, computer engineering, networked communication, and security.
The journal serves as a forum for tackling the technical problems arising from both file sharing and media streaming applications. It also includes state-of-the-art technologies in the P2P security domain.
Peer-to-Peer Networking and Applications publishes regular papers, tutorials and review papers, case studies, and correspondence from the research, development, and standardization communities. Papers addressing system, application, and service issues are encouraged.