Tian Jie, Chen Hao, Wang Zhigang, Shi Xianhua, Ji Zhengyu, Li Xianglu
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). 2021 Nov 17;21(22):7646. doi: 10.3390/s21227646.
Recently, the concept of spatial and direction modulation (SDM) has been developed to reap the advantages of both spatial modulation (SM) and directional modulation (DM). On the one hand, DM ensures the transmission security at the expected direction. On the other hand, the structure of SM-aided distributed receivers can enhance the security even if the eavesdropper is located in the same direction as the legitimate receiver. However, the above advantages are achieved based on the assumption that the eavesdropper is not equipped with distributed receivers. On the other hand, the information security can no longer be guaranteed when the eavesdropper is also equipped with distributed receivers. To alleviate this problem, we considered a joint design of SDM and covert information mapping (CIM) in order to conceive of a more robust structure of CIM-SDM. Furthermore, both the detection performances at the eavesdropper and the legitimate user were quantified through theoretical derivation. In general, both the analysis and simulation results supported that the proposed CIM-SDM structure provides more robust secure performance compared to the original SDM, even if the extreme condition of distributed receivers at the eavesdropper is considered, at the cost of moderate performance loss at the legitimate user.
最近,空间与方向调制(SDM)的概念已被提出,以充分利用空间调制(SM)和方向调制(DM)的优势。一方面,DM确保在预期方向上的传输安全性。另一方面,即使窃听者与合法接收者位于同一方向,基于SM的分布式接收机结构也能增强安全性。然而,上述优势是基于窃听者未配备分布式接收机这一假设实现的。另一方面,当窃听者也配备分布式接收机时,信息安全将无法得到保证。为缓解这一问题,我们考虑了SDM与隐蔽信息映射(CIM)的联合设计,以构思一种更稳健的CIM-SDM结构。此外,通过理论推导对窃听者和合法用户处的检测性能进行了量化。总体而言,分析和仿真结果均表明,即使考虑到窃听者配备分布式接收机的极端情况,所提出的CIM-SDM结构相比于原始SDM仍能提供更稳健的安全性能,代价是合法用户处会有适度的性能损失。