MIMO -6 ghz以下自干扰室内无线电信道的极化特性研究

Ramez Askar, M. Sarmadi, Fabian Undi, Rodrigo Silva Rezende, M. Peter, W. Keusgen, T. Haustein
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引用次数: 7

摘要

本文研究了与4 × 4多输入多输出天线(MIMO)系统相关的自干扰无线电信道的特性。自干扰信道测量在两个室内环境中进行:礼堂和接待大厅。捕获的测量数据用于表征十个并发的自干扰通道-共极化和交叉极化通道。利用矢量网络分析仪,扫描1千兆赫的带宽,占用2 ~ 3千兆赫的频带,对这些自干扰信道进行探测。通道测深仪配备双极化磁电偶极子天线,用于观测自干扰通道。每个偶极天线具有:两个射频端口,半球形辐射方向图和优秀的交叉极化辨别特性。然后对采集到的自干扰信道的频率响应进行离线数字处理以产生时域信道脉冲响应。这些时域响应以平均功率延迟曲线的形式表示。此外,我们还统计分析了这10个自干涉信道的特性。报告了时间色散参数及其相关值。此外,我们给出了自干扰信道的相关参数,如反向散射最大峰及其相关的发生实例,以及信道的最大超额延迟。
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Polarimetric Characterization of MIMO Sub-6-GHz Self-Interference Indoor Radio Channels
This paper studies the behavior of self-interference radio channels associated with a $4 \times 4$ multiple-input-multiple-output antenna (MIMO) system. Self-interference channel measurements were performed in two indoor environments: Auditorium and reception hall. The captured measurement data are used to characterize ten concurrent self-interference channels - both co-polarized and cross-polarized channels. By means of vector network analyzer, one gigahertz of bandwidth, which occupies 2-to-3-GHz frequency band, is swept to sound these self-interference channels. The channel sounder was equipped with two dually polarized magnetoelectric dipole antennas that were utilized to observe the self-interference channels. Each of the dipole antennas possesses: Two radio-frequency ports, a hemispherical radiation pattern, and an excellent cross-polarization discrimination property. The collected frequency responses of the measured self-interference channels are then digitally processed offline to produce time-domain channel impulse responses. These time-domain responses are presented in form of averaged power-delay profiles. Moreover, we have analyzed statistically the properties of these ten self-interference channels. Time dispersion parameters and their associated values are reported. Furthermore, we presented self-interference channel related parameters such as backscatter maximum peaks and their associated instances of occurrence, and maximum excess delay of the channels.
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