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Validation of Antenna Modeling Methodology in IMT-Advanced Channel Model

机译:IMT-Advanced Channel Model中天线建模方法论的验证

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In this paper, the antenna modeling method in the International Mobile Telecommunications-Advanced (IMT-Advanced) channel model is validated by field channel measurements in the indoor scenario at 2.35 GHz. First, the 2 × 2 MIMO channel impulse responses (CIRs) are recorded with practical antennas as references. Second, the CIRs are reconstructed from the available IMT-Advanced channel model with field patterns of the practical antennas and updated spatial parameters extracted from the similar scenario measurements. Then comparisons between the field CIRs and the reconstructed CIRs are made from coherent bandwidth, eigenvalue dispersion, outage capacity, and ergodic channel capacity. It is found that the reconstructed results closely approximate real results in the coherent bandwidth and correctly describe the statistical characteristics in frequency domain. Compared to the field CIRs, the spatial correlation of the reconstructed CIRs with both types of antenna have a wider range that causes the underestimation of the 5% channel outage capacity. Due to the negligence of the coupling among the antennas and the near field effect of antenna, this modeling method will have a great impact on the characteristics of radio channels, especially on the spatial characteristics.
机译:本文通过在2.35 GHz的室内场景中进行现场信道测量,验证了国际先进移动通信(IMT-Advanced)信道模型中的天线建模方法。首先,以实际天线为参考记录2×2 MIMO信道冲激响应(CIR)。其次,从具有实际天线场模式的IMT-Advanced信道模型和从类似情景测量中提取的更新空间参数,重建CIR。然后,根据相干带宽,特征值离散度,中断容量和遍历信道容量,对现场CIR和重构的CIR进行比较。发现重建结果在相干带宽中近似逼近实际结果,并正确描述了频域的统计特性。与现场CIR相比,两种类型天线的重建CIR的空间相关性范围更广,导致低估了5%的信道中断能力。由于天线之间耦合的疏忽和天线的近场效应,这种建模方法将对无线电信道的特性,尤其是空间特性产生很大的影响。

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