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Complex-Wall Effect on Propagation Characteristics and MIMO Capacities for an Indoor Wireless Communication Environment

机译:室内无线通信环境中复杂墙对传播特性和MIMO能力的影响

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摘要

The effects of complex wall structures on the characteristics of fading and the capacity of multi-input multi-output (MIMO) wireless communication systems for some typical indoor propagation environments are investigated. Two cases of wall structures are examined in this paper. In the first case, the walls are considered to be homogenous solid slabs, while, in the second case, the walls are assumed to be of complex structures. A two-di-mensional finite difference time domain method is employed to calculate the electric field distributions, and then, the local mean power, the Rician K factor, and the MIMO capacity are calculated and analyzed. It is found that the patterns of the local mean power distributions are different for the two wall-structure cases. As for the small-scale fading, it is shown that the Rician K factors for the two cases may be different by 5 dB. The resulting values of MIMO capacities are also quite different and are less than the ideal cases, where the elements of the transfer (H) matrix are assumed to be zero-mean Gaussians with unit variance. We also investigate the cases where complex walls are replaced by effective slab walls. It is found that complex walls cannot be appropriately characterized by simple effective slab walls as considerable difference exists between the two cases.
机译:研究了复杂墙体结构对某些典型室内传播环境下衰落特性和多输入多输出(MIMO)无线通信系统容量的影响。本文研究了两种墙壁结构情况。在第一种情况下,壁被认为是均匀的实心平板,而在第二种情况下,壁被认为是复杂的结构。利用二维时域有限差分法计算电场分布,计算并分析了局部平均功率,Rician K因子和MIMO容量。发现两种壁结构情况的局部平均功率分布模式是不同的。至于小规模衰落,表明两种情况的Rician K因子可能相差5 dB。 MIMO容量的结果值也相差很大,并且小于理想情况,在理想情况下,传输(H)矩阵的元素假定为零均值高斯分布,且具有单位差异。我们还研究了用有效的平板墙代替复杂墙的情况。已经发现,由于两种情况之间存在相当大的差异,因此不能通过简单的有效平板墙来适当地表征复杂的墙。

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