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The essential degrees of freedom in space-time fading channels

机译:时空衰落信道的基本自由度

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摘要

The key to reliable communication is a fundamental understanding of the interaction between the signal space and the channel. In time- and frequency-selective multi-antenna (space-time) fading channels this interaction happens in time, frequency and space. In this paper we propose a four-dimensional Karhunen-Loeve-like Fourier series representation for space-time channels that captures the essence of such interaction and exposes the intrinsic degrees of freedom in the channel. The four dimensions are: time, frequency and the two spatial dimensions at the transmitter and receiver. The key signal space parameters are the signaling duration, bandwidth and the two array apertures. The corresponding channel parameters are the delay, Doppler and the two angular spreads associated with the scattering environment. The representation induces a virtual partitioning of propagation paths in time, frequency and space that reveals their contribution to channel capacity and diversity. It also exposes fundamental dependencies between time, frequency and space thereby revealing the essential independent degrees of freedom in the channel.
机译:可靠通信的关键是对信号空间和通道之间相互作用的基本了解。在时间和频率选择的多天线(时空)衰落信道中,这种交互作用发生在时间,频率和空间中。在本文中,我们提出了一种用于时空通道的类似Karhunen-Loeve的四维Fourier级数表示,它捕捉了这种相互作用的本质并揭示了通道的内在自由度。四个维度分别是:时间,频率以及发射机和接收机处的两个空间维度。关键信号空间参数是信令持续时间,带宽和两个阵列孔径。相应的信道参数是延迟,多普勒和与散射环境相关的两个角度扩展。该表示引起了传播路径在时间,频率和空间上的虚拟划分,从而揭示了它们对信道容量和分集的贡献。它还揭示了时间,频率和空间之间的基本依赖性,从而揭示了信道中基本独立的自由度。

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