3G及以后网络中的自适应智能天线

A. M. Elmurtada, Y. Awad, M. Elnourani
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引用次数: 4

摘要

近年来,对移动通信系统的需求急剧增加。必须有新的概念和方法,以最佳方式利用有限的资源,这就需要有新的技术来满足这种需求。智能天线系统是通过对天线波束在移动设备或目标上进行整形和定位,从而减少对其他用户的干扰,从而对抗同信道干扰,最大限度地提高移动通信系统的用户容量的技术之一。它通过有效地减少多径衰落,在4G无线网络中具有更高的用户容量。本文提出了一种用于智能天线系统的建模、分析和仿真的工具,用于无线移动通信智能天线阵列设计所需的DOA估计和自适应波束形成。对不同单元数的线性阵列和平面阵列天线的智能天线系统性能进行了研究。首先通过智能天线系统发送信号,接收信号,并在一定的3G网络参数环境下计算其误码率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive smart antennas in 3G networks and beyond
The demand for mobile communication systems has dramatically increased in recent years. New concepts and methods, which can optimally exploit the limited resources, are necessary which required the need for new Technologies to satisfy that demand. Smart antenna system is one of those, which combats the co-channel interference and maximizes the user capacity of mobile communication system By shaping and locating the beam of the antenna on the mobile or the target thus decreasing interference to other users. It is now recognized by its higher user capacity in 4G wireless networks by efficiently reducing multipath fading. This paper presents a tool for the modelling, analysis and simulation of Smart Antenna System direction-of-arrival (DOA) estimation and adaptive beamforming needed in the design of smart antenna arrays for wireless mobile communications. The performance of smart antenna system had been studied for some linear and planar array antennas with different numbers of elements. Starting by transmitting the signal through smart antenna system, receiving it and calculating its BER under some 3G Network parameters environment.
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