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Measurement-Based Analysis of Spatial Degrees of Freedom in Multipath Propagation Channels

机译:基于测量的多径传播通道中空间自由度分析

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A method of estimating spatial degrees of freedom (DoF) from measured multipath propagation channels in the multiple-input single-output regime is presented. The DoF of the multipath channels on the transmit (Tx) side is derived by means of the spherical-wave expansion of electromagnetic fields radiated from a Tx antenna array having a certain aperture size. The DoF estimates are independent of particular realization of antenna elements on the Tx aperture. For a given aperture size, the DoF provides the number of the Tx antenna elements for efficient improvement of the system performance by utilizing the spatial diversity. Having confirmed the soundness of our DoF estimation method by channel measurements in an anechoic chamber, the DoF of indoor multipath channels is analyzed. The DoF on the Tx side of the considered multipath channels reveals larger values when the antenna aperture size is increased at a fixed frequency, and when the frequency increases for a fixed antenna aperture size. For a fixed frequency, increasing the antenna aperture size is more effective in observing extra DoF in the obstructed and non-line-of-sight channels than in the line-of-sight channels. Furthermore, for a fixed antenna aperture size, the use of the higher frequency brings larger DoFs in many propagation scenarios. The results also show that electrically smaller antennas are more efficient in observing the DoF. Finally, the solid angle of multipath is derived as a Tx antenna-independent metric of the multipath richness. It is defined as an angular range of dominant multipath clusters subtended on a unit sphere. Our analysis method is extendable to the multiple-input multiple-output regime in a straightforward manner.
机译:提出了一种从多输入单输出方案中的测量多径传播通道估计空间自由度(DoF)的方法。通过具有一定孔径尺寸的Tx天线阵列辐射的电磁场的球面波扩展,可以得出发射(Tx)侧的多径信道的DoF。 DoF估计与Tx孔径上天线元件的特定实现无关。对于给定的孔径大小,DoF提供了Tx天线元件的数量,以通过利用空间分集来有效地改善系统性能。通过在消声室中进行通道测量确认了我们的DoF估计方法的正确性之后,对室内多径通道的DoF进行了分析。当以固定频率增加天线孔径时,以及以固定天线孔径增大频率时,所考虑的多径信道Tx侧的DoF会显示较大的值。对于固定频率,增加天线孔径的尺寸比在视线通道中更有效地观察阻塞和非视线通道中的额外DoF。此外,对于固定的天线孔径大小,在许多传播场景中,较高频率的使用会带来较大的DoF。结果还表明,电学较小的天线在观察DoF方面更有效。最后,将多径的立体角导出为多径丰富度的与Tx天线无关的度量。它定义为单位球上对立的主要多径簇的角度范围。我们的分析方法可以直接扩展到多输入多输出方案。

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