Zhong Yuan, Ji Zhengyu, Li Xianglu, Fei Peng, Hou Dong, Wang Zhigang, Tian Jie
Institute of Electronic Engineering, China Academy of Engineering Physics, Mianyang 621999, China.
Key Laboratory of Science and Technology on Communications, University of Electronic Science and Technology of China, Chengdu 611731, China.
Sensors (Basel). 2024 Sep 30;24(19):6333. doi: 10.3390/s24196333.
In this paper, for the sake of enhancing the security of wireless transmission, we proposed a novel system based on spatial and direction modulation (SDM) combined with generalized spatial modulation (GSM) which is aided by covert information mapping (CIM), termed as the CIM-GSDM system. In such a system, the legitimated user is equipped with distributed receivers so as to demodulate the conveyed signal by exploiting its indices while disturbing eavesdroppers for information security. More specifically, part of the information is modulated into the indices of the legitimated distributed receiver subsets with the aid of the mapped covert information and the interference matrix, while another part of the message is arranged by conventional amplitude-phase modulation. The proposed system can reap the benefits from both GSM and CIM to make eavesdropper suffer great mixture. Furthermore, the detection scheme and theoretical analysis of error performance are discussed as well. The simulation results exhibit that the bit error rate (BER) performance of legitimate user is much better than that of the eavesdropper while the proposed scheme improves the security compared to the original CIM-SDM system at the same spectral efficiency.
在本文中,为了增强无线传输的安全性,我们提出了一种基于空间与方向调制(SDM)并结合广义空间调制(GSM)的新型系统,该系统借助隐蔽信息映射(CIM),称为CIM-GSDM系统。在这样的系统中,合法用户配备分布式接收机,以便通过利用其索引来解调传输的信号,同时为了信息安全干扰窃听者。更具体地说,一部分信息借助映射的隐蔽信息和干扰矩阵调制到合法分布式接收机子集的索引中,而另一部分消息则通过传统的幅度-相位调制来安排。所提出的系统可以从GSM和CIM两者中获益,使窃听者遭受极大的干扰。此外,还讨论了检测方案和误码性能的理论分析。仿真结果表明,在相同频谱效率下,合法用户的误码率(BER)性能比窃听者好得多,并且与原始的CIM-SDM系统相比,所提出的方案提高了安全性。