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Practical and Simple Wireless Channel Models for Use in Multipolarized Antenna Systems

机译:用于多极化天线系统的实用和简单的无线频道模型

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摘要

The next-generation wireless systems are expected to support data rates of more than 100 Mbps in outdoor environments. In order to support such large payloads, a polarized antenna may be employed as one of the candidate technologies. Recently, the third generation partnership standards bodies (3GPP/3GPP2) have defined a cross-polarized channel model in SCM-E for MIMO systems; however, this model is quite complex since it considers a great many channel-related parameters. Furthermore, the SCM-E channel model combines the channel coefficients of all the polarization links into one complex output, making it impossible to exploit the MIMO spatial multiplexing or diversity gains in the case of employing polarized antenna at transmitter and receiver side. In this paper, we present practical and simple 2D and 3D multipolarized multipath channel models, which take into account both the cross-polarization discrimination (XPD) and the Rician factor. After verifying the proposed channel models, the BER and PER performances and throughput using the EGC and MRC combining techniques are evaluated in multipolarized antenna systems.
机译:预计下一代无线系统将支持户外环境中超过100 Mbps的数据速率。为了支持如此大的有效载荷,可以采用偏振天线作为候选技术之一。最近,第三代伙伴关系标准机构(3GPP / 3GPP2)在MIMO系统中定义了SCM-E中的交叉极化通道模型;但是,此模型非常复杂,因为它考虑了许多与频道相关的参数很大。此外,SCM-E信道模型将所有偏振链路的信道系数组合成一个复数输出,使得在发射机和接收器侧采用偏振天线的情况下,不可能利用MIMO空间多路复用或分集增益。在本文中,我们呈现实用和简单的2D和3D多极化多径通道模型,以考虑交叉极化歧视(XPD)和瑞典因子。在验证所提出的频道模型之后,在多极化天线系统中评估BER和每个执行和MRC组合技术的吞吐量。

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