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Channel state based secure wireless communication

机译:基于通道状态的安全无线通信

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This paper proposes a new channel state based secure wireless communication mechanism to realize secure communication with a pre-equalization function in a physical layer. Researches of physical layer security have been proposed to achieve secure communication in physical layers. On the contrary, there are a few issues where terminals in a same direction can receive a message, overhead due to complex control mechanisms, special hardware, etc. This paper focusses on practical wireless communication environment, where multi-path signals are received at a receiver. It is common knowledge that a channel state according to multi-path signals is different when a position of a receiver is different. The transmitter of proposed scheme transmits an optimized signal to a receiver with pre-equalizing the signal according to the channel state between the transmitter and the receiver. Therefore, only the receiver that has the same channel state for the pre-equalizing can obtain the high quality signal from the transmitter, and can demodulate the signal correctly. As a result, eavesdroppers around the transmitter cannot equalize the received signal before a demodulation process for the received signal because they exist at a different place of the receiver. The numerical results show that the proposed scheme can realize secure communication in typical wireless channel models. It means that a legitimate receiver can demodulate a signal correctly and eavesdroppers suffer from demodulation errors. As a result, we can find that the proposed scheme can utilize a channel state as an encryption key in physical layer security communication.
机译:本文提出了一种新的基于信道状态的安全无线通信机制,以在物理层中实现具有预均衡功能的安全通信。已经提出了对物理层安全性的研究以实现物理层中的安全通信。相反,存在一些问题,同一方向上的终端可以接收消息,由于复杂的控制机制,特殊的硬件等导致开销。本文着重于实际的无线通信环境,在该环境中,多路径信号在基站处接收。接收者。公知的是,当接收器的位置不同时,根据多径信号的信道状态也不同。所提出的方案的发送器根据发送器和接收器之间的信道状态对信号进行预均衡,从而将优化的信号发送到接收器。因此,只有具有相同信道状态以进行预均衡的接收器才能从发送器获得高质量的信号,并且可以正确地解调该信号。结果,在发射器周围的窃听者在对接收信号进行解调处理之前不能均衡接收到的信号,因为它们存在于接收器的不同位置。数值结果表明,该方案可以在典型的无线信道模型中实现安全通信。这意味着合法的接收器可以正确解调信号,并且窃听者会遭受解调错误。结果,我们发现所提出的方案可以在物理层安全通信中利用信道状态作为加密密钥。

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