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Spatio-temporal channel characterization: theoretical framework and applications in MIMO system design

机译:时空信道表征:理论体系及其在MIMO系统设计中的应用

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The utilization of multiple antennas and space-time codes in multiple-input and multiple-output (MIMO) communication systems significantly improves the transmission channel capacity without using additional bandwidth and power. The improvement is achieved by decomposing the spatial structure of transmission channels and performing appropriate temporal and spatial multiplexing. In this paper, we propose a novel theoretical framework for MIMO channel modeling and characterization in order to facilitate the MIMO system design and performance evaluation. The channels are represented in space, time, wave vector, and frequency domains while the space-time and wave vector-frequency interdependences are considered. A realization of the theoretical framework, in a form of a practical framework, is also proposed to address the channel modeling and characterization at both transmitter and receiver sides. The utilization of the practical framework in MIMO communication system design is discussed to illustrate its applications in realistic scenarios. The angle of arrival estimation based on the proposed practical framework using field test measurement data is also presented as illustrative examples.
机译:在多输入和多输出(MIMO)通信系统中利用多个天线和空时代码可显着提高传输信道容量,而无需使用额外的带宽和功率。通过分解传输信道的空间结构并执行适当的时间和空间复用来实现改进。在本文中,我们为MIMO信道建模和表征提出了一种新颖的理论框架,以促进MIMO系统的设计和性能评估。信道在空间,时间,波向量和频域中表示,同时考虑了时空和波向量-频率的相互依赖性。还提出了一种以实际框架的形式实现的理论框架,以解决发送器和接收器端的信道建模和表征。讨论了在MIMO通信系统设计中实际框架的利用,以说明其在实际场景中的应用。基于提出的使用现场测试测量数据的实用框架的到达角估计也作为示例说明。

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