面向LTE异构网络公共安全的设备对设备通信的安全多径路由算法

Chafika Tata, M. Kadoch
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引用次数: 11

摘要

本文提出了一种新的方法,用于设备到设备(D2D)的安全通信,如果不能在LTE小蜂窝内应用网络编码传输。我们的新算法称为安全负载均衡选择性自组织按需多路径距离矢量(LBS-AOMDV),它基于多路径编码信息传输、数据分割和数据变换方案。本研究的目的是通过防止窃听者从合法用户传输的信息中获取重要信息,同时确保传输流量的高水平服务质量(QoS),减少无线Mesh网络(WMN)中机密性攻击的影响。仿真结果表明,在不增加流量控制的情况下,Secure LBS-AOMDV比LBS-AOMDV提高了无线网络的安全性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Secure Multipath Routing Algorithm for Device-to-Device Communications for Public Safety over LTE Heterogeneous Networks
This article proposes a new approach for secure communications Device-to-Device (D2D) if unable to apply network coding transmissions within LTE small cells. Our new algorithm called Secure Load Balancing Selective Ad hoc On-demand Multipath Distance Vector (LBS-AOMDV) is based on a multipath coded information transmissions, Data Splitting and Data Shuffling schemes. The objective of this study is to reduce the impact of confidentiality attack within Wireless Mesh Networks (WMN) by preventing eavesdroppers to obtain significant information from those transmitted by legal users, while ensuring a high level of quality of Service (QoS) for transmitted traffic. The simulation results show that Secure LBS-AOMDV increases the level of security in the wireless network compared to the LBS-AOMDV approach without adding traffic control.
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