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首页> 外文期刊>International journal of computer science and network security >Adaptive Cylindrical Antenna Array For Massive MIMO in 5G
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Adaptive Cylindrical Antenna Array For Massive MIMO in 5G

机译:适用于5G中大规模MIMO的自适应圆柱天线阵列

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摘要

Massive capacity and connectivity are the main new emerged issues in the last wireless generations, especially for LTE-Advanced. The last cited topics, are the reason of a new wireless core network well known as 5G. There are different methods to deal with this fact, we propose in this paper an ingenious one which is the massive MIMO adaptive array antennas considering a millimetric wavelength small cell. Existing Array antennas geometry are even linear, circular, planar or in multidimensional grid that don’t satisfy our increasing capacity and connectivity needs. Subsequently, creating a new geometric form based on cylindrical smart antennas have been developed using MATLAB software to scan the overall 3D space, improves the network capacity and edges the value of several tens of Giga bit per second (Gbps). The problem of energy scattering is solved by Beam Division Multiple Access (BDMA). Only service-requesting users are susceptible to be served. Otherwise, They are not considered by the access points (APs).
机译:大规模的容量和连接性是最近几代无线网络中出现的主要新问题,尤其是对于LTE-Advanced。最后引用的主题是众所周知的称为5G的新无线核心网络的原因。有多种方法可以解决这一问题,我们在本文中提出了一种巧妙的方法,即考虑毫米波波长小小区的大规模MIMO自适应阵列天线。现有的阵列天线几何形状甚至是线性,圆形,平面或多维网格,无法满足我们不断增长的容量和连接需求。随后,使用MATLAB软件开发了一种基于圆柱型智能天线的新几何形状,以扫描整个3D空间,提高了网络容量,并使每秒几十个千兆位(Gbps)的值降低。通过束分多址(BDMA)解决了能量散射的问题。仅请求服务的用户可以接受服务。否则,接入点(AP)不会考虑它们。

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