Towards 5G: A study of the impact of antenna polarization on statistical channel modeling

Abdelbasset Bedda Zekri, R. Ajgou
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引用次数: 1

Abstract

The millimetre wave (mmWave) is alleged as an important element invention to respond to the rapid increase in wireless demand for mobile traffic using its huge bandwidth. However, channel modeling remains difficult due to its high dependence on weather conditions and the positioning of the antenna for communication in direct visibility line-of-sight (LOS). Co-polarization and cross-polarization (X-pol) are two main events in the direction of the radiation element for wave transmission; where the wanted direction of wave transmission denotes the co-pol and the orthogonal propagation of the intended direction represents X-pol. This work investigates the effect of the polarization on a statistical channel modeling at 28 GHz, 38 GHz & 73 GHz mmWave channel using NYUSIM Model.
迈向5G:天线极化对统计信道建模的影响研究
毫米波(mmWave)被认为是一项重要的元素发明,以响应快速增长的无线需求的移动流量利用其巨大的带宽。然而,信道建模仍然很困难,因为它高度依赖于天气条件和天线在直接可见视距(LOS)中通信的定位。共极化和交叉极化(X-pol)是波在辐射元方向上传播的两个主要事件;其中,波传播的期望方向表示共pol,而预期方向的正交传播表示X-pol。本文利用NYUSIM模型研究了极化对28 GHz、38 GHz和73 GHz毫米波信道统计建模的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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