Characterisation of the time-dependent urban MIMO channel in FDD communication systems

J. Maurer, C. Waldschmidt, T. Kayser, W. Wiesbeck
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引用次数: 8

Abstract

The influence of the time dependent urban transmission channel on MIMO systems is investigated in this paper. Exploiting the full potential of MIMO systems requires the knowledge of the transmission channel matrix at the transmitter and the receiver. Channel estimation is therefore necessary. It has to be performed continuously as the transmission channel changes over time. In real communications systems it is only possible to update the channel state information in certain time intervals. During these intervals the estimated channel matrix is assumed to be constant. The difference between the real channel and the estimated one leads to non-orthogonal channels in the MIMO system. The result is inter-sub-channel interference (ISCI). The ISCI is considered as a Gaussian noise random process, which is added to the common thermal noise. Due to the increased total noise power of the resulting channel, the capacity decreases. Furthermore, a sub-channel transmission gain degradation (STGD) occurs caused by the non-orthogonal sub-channels. This results in an additional capacity loss. The dependency of ISCI and STGD on the update time interval is investigated. The considerations are based on simulations of the transmission channel in an urban environment. In order to attain realistic results, a 3D ray-tracing tool is used. An FDD communication system is assumed.
FDD通信系统中时变城市MIMO信道的特性
本文研究了时变城市传输信道对MIMO系统的影响。利用MIMO系统的全部潜力需要发射器和接收器的传输信道矩阵的知识。因此,信道估计是必要的。当传输信道随时间变化时,它必须连续执行。在实际的通信系统中,只能在一定的时间间隔内更新信道状态信息。在这些间隔期间,假定估计的信道矩阵是恒定的。在MIMO系统中,实际信道与估计信道之间的差异导致了信道的非正交。其结果是子信道间干扰(ISCI)。将ISCI视为一个高斯噪声随机过程,并将其加入到常见的热噪声中。由于产生的信道的总噪声功率增加,容量减小。此外,由于子信道不正交,导致子信道传输增益下降(STGD)。这将导致额外的容量损失。研究了ISCI和STGD对更新时间间隔的依赖关系。这些考虑是基于城市环境中传输信道的模拟。为了获得逼真的结果,使用了3D光线追踪工具。假设一个FDD通信系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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