首页> 外文期刊>Journal of ambient intelligence and humanized computing >An intelligent cross layer security based fuzzy trust calculation mechanism (CLS-FTCM) for securing wireless sensor network (WSN)
【24h】

An intelligent cross layer security based fuzzy trust calculation mechanism (CLS-FTCM) for securing wireless sensor network (WSN)

机译:基于智能跨层安全的模糊信任计算机制(CLS-FTCM),用于保护无线传感器网络(WSN)

获取原文
获取原文并翻译 | 示例
       

摘要

Wireless sensor networks (WSNs) have a significant number of sensing nodes with computing and communication resources for data transmission. Many essential aspects such as computational power, storage capability, and energy consumption must be taken into account to use WSNs for data transmission. Previous research work developed a cross layer security based intrusion detection system (CLS-IDS) framework that has improved network performance, minimal energy consumption and to prolong network life, meeting QoS requirements. However, this CLS-IDS method cannot detect the faults happening at various places at the same time. So, this research work proposes the cross layer security based fuzzy trust calculation mechanism (CLS-FTCM) and also least overhead monitoring for WSNs by means of memory and energy demands to resolve the above issue. This cross-layer security was designed with the aid of a fuzzy logic-based calculation method for a protocol called cross-layer protocol, uses multiple parameters extracted by the exchange of inter-layer information in order to alleviate the effects of security hazards to the network of wireless sensors. In order to identify malicious nodes on the network, the fault monitoring system is carried out using enhanced convolutional neural network (ECNN) classifier and the confidential value is determined for the trust values. The proposed cross layer security based fuzzy trust mechanism (CLS-FLTCM) is highly efficient technique to ensure optimum safety in wireless sensor environment when compared to the previous techniques. The simulation results conducted using the NS-2 simulator and testing the safety performance of the proposed system demonstrates that this approach is better than the current detection precision techniques.
机译:无线传感器网络(WSN)具有大量的感测节点,具有用于数据传输的计算和通信资源。必须考虑到许多基本方面,例如计算能力,存储能力和能量消耗以使用WSN进行数据传输。以前的研究工作开发了一种基于跨层安全的入侵检测系统(CLS-ID)框架,其具有改进的网络性能,最小能耗和延长网络寿命,满足QoS要求。但是,此CLS-ID方法无法检测到同时在各个地方发生的故障。因此,这项研究工作提出了基于跨层安全的模糊信任计算机制(CLS-FTCM),以及通过内存和能源要求来解决上述问题的WSN的最小开销监视。借助于称为跨层协议的协议的模糊逻辑的计算方法设计了这种横向安全性,使用由层间信息的交换提取的多个参数,以便减轻安全危险的影响无线传感器网络。为了识别网络上的恶意节点,故障监控系统使用增强型卷积神经网络(ECNN)分类器进行,并且确定信任值的机密值。所提出的横梁安全基于基于的模糊信任机制(CLS-FLTCM)是高效的技术,以确保与先前技术相比的无线传感器环境中的最佳安全性。使用NS-2模拟器进行的仿真结果和测试所提出的系统的安全性能表明,这种方法优于电流检测精度技术。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号