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3D vs. 2D Channel Capacity of Outdoor to Indoor Scenarios Derived from Measurements in China and New Zealand

机译:3D与2D通道容量户外到中国和新西兰测量的室内情景

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Three dimensional (3D) Multiple Input Multiple Output (MIMO) is considered as one key technology for 5th Generation mobile communication systems. However, can the capacity derived from a 3D channel impulse response (CIR) better approximate the corresponding capacity derived from the measured CIR? Is there a substantial improvement in the capacity of 3D MIMO system in comparison to the classical 2D case? To answer these questions, extensive field measurements were conducted for the outdoor to indoor scenarios in China and New Zealand. Key channel parameters are extracted from the measured channel impulse response via the space-alternating generalized expectation-maximization algorithm, followed by the reconstruction of the 32 × 56 CIR according to 2D and 3D channel model. Then CIRs are used to evaluate the channel capacity and comparative simulation results demonstrate that the 3D MIMO capacity closely approximates the capacity predicted with practical CIRs. Moreover, obvious enhancements in the capacity of 3D channel is observed in comparison to 2D case. In addition, the distribution of eigenvalues and the number of contributing eigenvalues are also investigated.
机译:三维(3D)多输入多输出(MIMO)被认为是第五代移动通信系统的一个关键技术。但是,可以从3D通道脉冲响应(CIR)导出的容量更好地近似于从测量的CIR衍生的相应容量?与古典2D案例相比,3D MIMO系统的容量有很大改进吗?为了回答这些问题,为中国和新西兰的室内场景进行了广泛的现场测量。通过空间交替的广义期望最大化算法从测量的通道脉冲响应中提取键通道参数,然后根据2D和3D信道模型重建32×56 CIR。然后,CIRS用于评估信道容量和比较仿真结果表明,3D MIMO容量与实际CIRS预测的容量紧密近似。此外,与2D情况相比,观察到3D信道容量的明显增强。此外,还研究了特征值的分布和贡献的特征值的数量。

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