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Security protection over wireless fading channels by exploiting frequency selectivity

机译:通过利用频率选择性对无线衰落通道的安全保护

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Secure wireless communication has always been a hot research topic due to the vulnerabilities associated with wireless channel. Physical layer aspects to secure wireless communication, based on the information-theoretic security and signal processing methods have gained much recognition over the last decade. Specifically, artificial noise (AN) methods are assumed to be good means for providing security against potential eavesdroppers in multi-input multi-output (MIMO) systems and/or relay systems. However, there are still a large number of nodes which do not have multi-antennas or support sophisticated protocols in wireless networks. In this paper, a novel AN-aided method is proposed to secure wireless communications between the legitimate users (not equipped with multiple antennas) in the presence of an eavesdropper. In this proposed method frequency selective property of wireless channel is exploited. The basic principle is same in which transmitter generate random AN signal utilizing some of the transmission power to confuse eavesdropper. However artificial noise is generated in such a way that it appears to be zero at the sampling time, only for the legitimate receiver while degrading eavesdropper's channel. Artificial noise is specified using the channel state information (CSI) of the legitimate users' link. However, the secrecy of proposed scheme doesn't depend on the secrecy of CSI. Extensive simulation suggests that the proposed scheme can effectively utilized for securing wireless transmissions.
机译:由于与无线信道相关的漏洞,安全无线通信一直是一个热门的研究主题。基于信息理论安全性和信号处理方法的物理层方面以安全无线通信在过去十年中获得了很多识别。具体地,假设人工噪声(AN)方法是用于为多输入多输出(MIMO)系统和/或中继系统中的潜在窃听器提供安全性的良好手段。然而,仍然存在大量节点,这些节点没有多天空或在无线网络中支持复杂的协议。在本文中,提出了一种新颖的一种辅助方法,以在窃听器的情况下确保合法用户(不配备多个天线)之间的无线通信。在该提出的方法中,利用无线信道的频率选择性。基本原理是相同的,其中发射机利用一些传输功率来混淆窃听器的无随机信号。然而,以这样的方式产生人工噪声,使得在采样时间似乎是零,仅在降级窃听者的信道的同时为合法接收器处于合法的接收器。使用合法用户链接的信道状态信息(CSI)指定人工噪声。然而,所提出的计划的保密性不依赖于CSI的保密。广泛的模拟表明,所提出的方案可以有效地用于确保无线传输。

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