TY - JOUR
T1 - Unique Decomposition Constellation Group Based Secure Multipath MISO Communications
AU - Han, Gangtao
AU - Li, Jialu
AU - Wang, Junjie
AU - Tang, Zhiqing
AU - Pan, Gaofeng
AU - Wang, Ning
N1 - Publisher Copyright:
© 1967-2012 IEEE.
PY - 2026
Y1 - 2026
N2 - In this paper, a novel secure wireless communication scheme based on the unique decomposition constellation group (UDCG) is proposed for multipath multi-input single-output (MISO) systems, where dynamic metasurface antennas (DMA) are deployed at the base station. In the proposed communication scheme, multipath channel state information (CSI) is firstly estimated with the aid of DMA's high spatial resolution. Then, a group of distinct sub-constellations, which constitutes a UDCG, is employed to assign different symbols to the multipath components. Meanwhile, orthogonal precoding based on the multipath CSI is implemented to eliminate the interference among different multipath components. As a result, the superposed signals at the legitimate receiver rather than the illegitimate receiver can be uniquely determined. Finally, a precoding optimization problem is investigated to improve the secrecy capacity of the proposed scheme. Computer simulation results demonstrate that the proposed scheme effectively mitigates the eavesdropping risk from illegitimate receivers and achieves a better secrecy capacity.
AB - In this paper, a novel secure wireless communication scheme based on the unique decomposition constellation group (UDCG) is proposed for multipath multi-input single-output (MISO) systems, where dynamic metasurface antennas (DMA) are deployed at the base station. In the proposed communication scheme, multipath channel state information (CSI) is firstly estimated with the aid of DMA's high spatial resolution. Then, a group of distinct sub-constellations, which constitutes a UDCG, is employed to assign different symbols to the multipath components. Meanwhile, orthogonal precoding based on the multipath CSI is implemented to eliminate the interference among different multipath components. As a result, the superposed signals at the legitimate receiver rather than the illegitimate receiver can be uniquely determined. Finally, a precoding optimization problem is investigated to improve the secrecy capacity of the proposed scheme. Computer simulation results demonstrate that the proposed scheme effectively mitigates the eavesdropping risk from illegitimate receivers and achieves a better secrecy capacity.
KW - Multipath
KW - dynamic metasurface antenna
KW - multi-input single-output
KW - secrecy capacity
UR - https://www.scopus.com/pages/publications/105044053446
U2 - 10.1109/TVT.2026.3709321
DO - 10.1109/TVT.2026.3709321
M3 - Article
AN - SCOPUS:105044053446
SN - 0018-9545
JO - IEEE Transactions on Vehicular Technology
JF - IEEE Transactions on Vehicular Technology
ER -