Jiang Kuangming, Wang Xiaoyong, Jin Yanliang, Saleem Asad, Zheng Guoxin
Key Laboratory of Specialty Fiber Optics and Optical Access Networks, Shanghai University, Shanghai 200444, China.
CASCO Signal Ltd., Shanghai 200071, China.
Sensors (Basel). 2022 May 11;22(10):3669. doi: 10.3390/s22103669.
The phase of the channel matrix elements has a significant impact on channel capacity in a mobile multiple-input multiple-output (MIMO) communication system, notably in line-of-sight (LoS) communication. In this paper, the general expression for the phase of the channel matrix at maximum channel capacity is determined. Moreover, the optimal antenna configuration of the 2 × 2 and 3 × 3 transceiver antenna array is realized for LoS communication, providing methods for n×n optimal antenna placement, which can be used in short-range LoS communication and non-scattering environment communication, such as coupling train communication and inter-satellite communication. Simulation results show that the 2 × 2 rectangular antenna array is more suitable for the communication of coupling trains, while the 3 × 3 circular arc antenna array is more suitable for virtual coupling trains according to antenna configurations. Moreover, the 2 × 2 antenna rectangular configuration proposed in this paper has reached the optimal channel in inter-satellite communication, which lays a foundation for the deployment of communication systems.
在移动多输入多输出(MIMO)通信系统中,信道矩阵元素的相位对信道容量有重大影响,在视距(LoS)通信中尤为明显。本文确定了信道容量最大时信道矩阵相位的一般表达式。此外,针对LoS通信实现了2×2和3×3收发信机天线阵列的最优天线配置,给出了n×n最优天线布局方法,可用于短距离LoS通信和非散射环境通信,如耦合列车通信和星际通信。仿真结果表明,根据天线配置,2×2矩形天线阵列更适合耦合列车通信,而3×3圆弧天线阵列更适合虚拟耦合列车通信。此外,本文提出的2×2天线矩形配置在星际通信中达到了最优信道,为通信系统的部署奠定了基础。