基于新型id群签名模型和SECC技术的WBSN节能安全数据传输

C. R. K. C. Ramesh Kumar, T. G. K. C. Ramesh Kumar, A. H. T. Ganesh Kumar, D. R. T. A. Hemlathadhevi
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引用次数: 0

摘要

将可穿戴式传感器与通过无线通信信道连接的计算系统组成的无线网络称为无线人体传感器网络(WBSN)。它可以通过传感器进行连续监测,用于医疗和非医疗应用。WBSN面临着信息丢失、访问控制、身份验证等安全问题。由于WBSN收集重要信息,并且运行在不友好的环境中,因此需要严格的安全机制来防止网络中的匿名交互。在智能可穿戴设备之间通过传感器网络传输数据的支持下,评估了不同的安全威胁。利用传感器网络执行数据传输(DT)时,整个网络寿命和数据传输(DT)质量都会降低,而传感器网络消耗更多的能量。为此,本文采用基于身份验证id的组签名模型和SECC技术,提出了一种高效节能的WBSN安全数据传输机制。首先,使用归一化对立学习BAT优化算法(NOBL-BOA)从远程身体传感器系统中的传感器中选择组管理器(GM)。然后,利用信息熵诱导的k -均值算法(IEKMA)进行聚类,以提高能源效率。其次,为了保证WBSN的安全性,基于新的基于身份验证id的组签名协议进行消息认证。最后,采用密钥诱导椭圆曲线加密技术(SECC)对消息进行加密,保证消息的安全传输。仿真结果表明,与现有工作相比,本文提出的工作提高了安全性和能效。
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An Energy Efficiency Based Secure Data Transmission in WBSN Using Novel Id-Based Group Signature Model and SECC Technique
A wireless network composed of wearable sensing along with computing systems connected via a wireless communication channel is termed Wireless Body Sensor Network (WBSN). It enables continuous monitoring through sensors for medical and nonmedical applications. WBSN faces several security problems such as loss of information, access control, and authentication. As WBSN collects vital information and operates in an unfriendly environment, severe security mechanisms are needed in order to prevent the network from anonymous interactions. The different security threats are evaluated with the support of the data transmitted via the sensor networks amongst smart wearable devices. The whole network lifetime together with the Data Transmission (DT) quality is mitigated whilst performing DT utilizing sensor networks, which consume more energy. Hence, in this paper, an energy-efficient secure data transmission mechanism is proposed in WBSN using a novel authentication id-based group signature model and SECC technique. At first, the Group Manager (GM) is selected from the sensors in the remote body sensor system using Normalized Opposition Based Learning BAT Optimization Algorithm (NOBL-BOA). Afterward, clustering with Information Entropy induced K-Means Algorithm (IEKMA) takes place to improve energy efficiency. Next, to provide security to the WBSN, message authentication is carried out based on novel authentication ID-based group signature protocol. Finally, Secret key induced Elliptic Curve Cryptography (SECC) is used to encrypt the message for secure transmission. The simulation results reveal that in comparison with existing works, the proposed work achieves improved security and energy efficiency.  
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