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SOQR: Secure Optimal QoS Routing in Wireless Ad Hoc Networks

机译:SOQR:在无线ad Hoc网络中安全最佳QoS路由

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This paper study the secure optimal QoS routing (SOQR) in wireless ad hoc networks (WANETs) based on the physical layer security techniques. Specifically, we consider a multi-hop WANET with malicious eavesdroppers and cooperative jammers, and formulate the SOQR as an optimization problem. To deal with this problem, we first derive the closed-form expressions of connection outage probability (COP) and secrecy outage probability (SOP) for any given end-to-end path, which serve as the performance metrics of communication QoS and transmission security, respectively. Then, we explore the minimum COP conditioned on that SOP is below a pre- specified threshold and obtain the corresponding achievable power allocation strategy. With the help of analysis of a given path, we further propose the SOQR algorithm which selects the secure path between a pair of source and destination nodes in a distributed manner to achieve the optimal QoS performance. Finally, numerical simulations are conducted to validate the efficiency of our theoretical results, as well as to illustrate the QoS-security tradeoffs.
机译:本文根据物理层安全技术研究无线临时网络(WANET)中的安全最佳QoS路由(SOQR)。具体而言,我们考虑一个具有恶意窃听者和合作干扰的多跳无人物,并将SOQR作为优化问题制定。要处理此问题,我们首先为任何给定的端到端路径推导出连接中断概率(COP)和保密中的中断概率(SOP)的封闭式表达,它用作通信QoS和传输安全性的性能度量, 分别。然后,我们探索在该SOP上的最小警察低于指定的阈值,并获得相应的可实现的功率分配策略。在对给定路径的分析的帮助下,我们进一步提出了SOQR算法,其以分布式方式在一对源节点之间选择安全路径以实现最佳QoS性能。最后,进行了数值模拟以验证理论结果的效率,以及说明QoS安全权衡。

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