A trustworthy and energy-aware routing protocol in software-defined wireless mesh networks

A trustworthy and energy-aware routing protocol in software-defined wireless mesh networks
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软件定义无线网状网络中值得信赖且节能的路由协议

DOI:
10.1016/j.compeleceng.2016.10.015
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发表时间:
2017-11
期刊:
Journal of Computers & Electircal Engineering
影响因子:
--
通讯作者:
Stewart Blakeway
Stewart Blakeway
中科院分区:
其他
文献类型:
--
作者:
Hui Lin;Jia Hu;Li Xu;YouLiang Tian;Lei Liu;Stewart Blakeway

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混合无线网状网(Hybrid Wireless Mesh Networks,HWMN)是为了解决无线通信中支持跨域移动的应用的挑战而提出的。由于多跳和分散的网络架构,HWMN自然容易受到各种安全威胁,特别是内部攻击。因此,HWMN必须能够检测异常,提供安全的路由和保护用户隐私,通过节点之间的合作。然而,现有的HWMN路由协议不能保证安全性,有效地保护用户的隐私。此外,传统的HWMN是垂直集成的,其中网状路由器的控制平面和数据平面被捆绑在一起,这使得根据预定义的安全策略来配置网络以及自适应地响应各种动态安全威胁变得复杂且困难。软件定义的无线Mesh网络将路由器的控制平面和数据平面解耦,从而实现更灵活和有效的安全策略配置。针对上述问题,本文提出了一种隐私感知、安全和能量感知的绿色路由协议(PSGR),该协议能够抵御内部攻击,实现更强的隐私保护并降低软件定义HWMN的能耗。详尽的理论分析验证了PSGR协议可以有效、高效地实现针对内部攻击的安全和隐私保护。仿真结果表明,PSGR在黑洞/灰洞攻击和虫洞攻击下,与现有的PA-SHWMP、PASER和HWMP协议相比,在数据包投递率、网络吞吐量和能量效率方面具有上级性能.
Hybrid Wireless Mesh Networks (HWMNs) were proposed to address the challenges in wireless communications to support mobile applications across different domains. Due to the multi-hop and decentralized network architecture, HWMNs are naturally susceptible to various security threats, especially internal attacks. Therefore, HWMNs must be able to detect anomalies, provide secure routing and protect user privacy through the cooperation among nodes. However, the existing routing protocols for HWMNs cannot ensure the security to protect the users privacy effectively. Moreover, traditional HWMNs are vertically integrated where the control and data planes of mesh routers are bundled together, which makes it complex and difficult to configure the network according to predefined security policies, and to adaptively respond to various dynamic security threats. Software-Defined Wireless Mesh Networks decouple the control plane and data plane of routers and thus enable a more flexible and efficient configuration of security policies. Taking up this opportunity to address the aforementioned challenges, this paper proposes a privacy-aware, secure and energy-aware green routing (PSGR) protocol that can defend against internal attacks, achieve stronger privacy protection and reduce energy consumption in Software-Defined HWMNs. The elaborate theoretical analysis verify that the PSGR protocol can implement the security and privacy protection against internal attacks effectively and efficiently. Simulation results demonstrate a superior performance of PSGR in terms of packet delivery ratio, network throughput and energy efficiency compared to the existing PA-SHWMP, PASER, and HWMP protocols in the presence of Blackhole/Grayhole attacks and wormhole attacks.
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