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An Artificial Noise assisted secrecy-enhancing scheme for Space-Time Shift Keying systems

机译:用于时空移位键控系统的人工噪声辅助保密方案

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It is meaningful in practice to explore a secrecy-enhancing Multi-Input-Multi-Output (MIMO) scheme with flexible Radio Frequency (RF) antenna chains as well as low complexity. In this paper, an Artificial Noise (AN) assisted secrecy-enhancing scheme is proposed for the Space-Time Shift Keying (STSK) systems, which has the capability to prevent the passive eavesdropper from eavesdropping the legitimate communication. In the proposed AN-STSK scheme, the transmitter exploits the knowledge of legitimate Channel State Information (CSI) to generate suitable AN with an optimal power fraction in order to introduce interference to the transmit signal. Since the AN resides in the null space of the legitimate channel matrix, the AN can be canceled at the legitimate receiver. First, the secrecy capacity of the proposed AN-STSK scheme has been derived theoretically based on the system model and then resolved by using the Monte Carlo approach. Further, the simulation results of the proposed scheme over the fast fading and block invariant channel have been obtained and studied in detail compared with the traditional AN-Spatial Modulation (SM) scheme. It has been seen that the proposed scheme can improve the secrecy capacity at a cost of a slight increase in Bit Error Rate (BER) through a proper fraction of transmit power allocated to AN. Therefore, the performance trade-offs between the BER and the secrecy capacity can be made in practice. Moreover, it is more effective for the AN-STSK scheme to block the passive eavesdropping when the channel Signal-to-Noise Ratio (SNR) increases since the BER of the legitimate receiver decreases much faster than that of the passive eavesdropper. As a result, the proposed scheme can boost the secrecy capacity at much higher level than the traditional AN-SM scheme in case of the good channel condition. (C) 2019 Elsevier B.V. All rights reserved.
机译:探索具有柔性射频(RF)天线链以及低复杂性的保密增强的多输入多输出(MIMO)方案以及低复杂性是有意义的。在本文中,提出了用于空间移位键控(STSK)系统的人工噪声(AN)辅助保密增强方案,其具有防止被动窃听者窃听合法通信的能力。在所提出的AN-STSK方案中,发射机利用合法信道状态信息(CSI)的知识来生成具有最佳功率分数的合适的AN,以便对发射信号引入干扰。由于驻留在合法信道矩阵的空白区域中,因此可以在合法的接收器处取消AN。首先,所提出的AN-STSK方案的保密能力已经基于系统模型理论上推导出来,然后通过使用蒙特卡罗方法解决。此外,与传统的空间调制(SM)方案相比,已经获得并研究了快速衰落和块不变通道上提出的方案的模拟结果。已经看到所提出的方案可以通过分配给AN的正数分数,以略微增加误码率(BER)的成本来提高保密容量。因此,可以在实践中进行BER与保密能力之间的性能权衡。此外,当合法接收器的BER比被动窃听器的BER减小,阻挡当信道信噪比比(SNR)增加时,更有效地阻止被动窃听。结果,在良好的通道条件下,所提出的方案可以提高比传统AN-SM方案更高的秘密容量。 (c)2019 Elsevier B.v.保留所有权利。

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