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Exploiting multi-radio cooperation in heterogeneous wireless networks for absolute security against eavesdropping

机译:利用异构无线网络中的多无线电合作以绝对安全地防止窃听

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In this paper, we consider a heterogeneous wireless communication scenario, which is comprised of a source (S) and a destination (D) in the presence of an eavesdropper (E), each equipped with multiple heterogeneous radio access interfaces. In order to enhance the transmission security against eavesdropping, we propose a multi-radio cooperation (MRC) scheme, where the multiple radio interfaces at S are simultaneously utilized to transmit a source signal to D along with a weight design. For the convenience of performance comparisons, the conventional multi-radio switch (MRS) scheme is also considered as a benchmark scheme, in which only the single “best” radio interface is selected at S to transmit the source signal. We evaluate the secrecy capacity and intercept probability (IP) of conventional MRS and proposed MRC schemes over Rayleigh fading channels. It is proved that the proposed MRC scheme can achieve an absolute security with zero IP, which is further validated through Monte-Carlo simulations. Numerical results show that the proposed MRC scheme performs better than conventional MRS scheme in terms of their secrecy capacity and IP.
机译:在本文中,我们考虑一种异构无线通信方案,该方案由一个存在窃听器(E)的源(S)和一个目标(D)组成,每个窃听器(E)都配备有多个异构无线电访问接口。为了增强针对窃听的传输安全性,我们提出了一种多无线电协作(MRC)方案,其中,在S处的多个无线电接口与权重设计一起被同时用于向D传输源信号。为了方便进行性能比较,常规的多无线电开关(MRS)方案也被视为基准方案,其中在S处仅选择单个“最佳”无线电接口来发送源信号。我们评估了传统MRS和在瑞利衰落信道上提出的MRC方案的保密能力和拦截概率(IP)。实践证明,提出的MRC方案可以实现零IP的绝对安全性,并通过蒙特卡洛仿真进一步验证。数值结果表明,所提出的MRC方案在保密能力和IP方面均优于传统的MRS方案。

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