In most multiple-input multiple-output (MIMO) communication systems, the amount of information that can be transmitted reliably depends on the effective degrees of freedom (EDoF) of the wireless channel. Conventionally, one can model the channel matrix and study the EDoF, based on an electromagnetic (EM) channel model that is built with the free space Green's function. However, the EDoF of free-space channel model may not fit the practical scenario when EM waves only transmit above the ground. In this paper, we analyze the EDoF for both discrete and continuous aperture MIMO systems in the half space. We also propose an approach to quickly calculate the Green function in the half space from the Sommerfeld identity. Simulation results show that the difference between the EDoF in the half space and that in the free space is non-negligible for the near field communications, which indicates that the ground exerts noticeable influence on EDoF. The proposed study establishes a fundamental electromagnetic framework for MIMO wireless communication in the half space.
翻译:在大多数多投入多输出通信系统中,可可靠传输的信息量取决于无线频道的有效自由度(EDoF) 。 可以说,我们可以根据自由空间绿化功能建立的电磁(EM)频道模型模拟频道矩阵并研究EDoF。 然而,自由空间频道模型的EDoF可能不符合实际情景,因为EM波波仅从地面上传输。在本文中,我们分析了半空独立和连续孔径MIMO系统EDoF。我们还提出了一个方法,从Sommerfeld身份中快速计算半空的绿色功能。模拟结果显示,在半空的EDoF与自由空间的EDoF之间的差异,这说明地面对EDoF具有显著影响。 拟议的研究为半空的MIMIMO无线通信建立了一个基本的电磁框架。