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Dynamic capacity enhancement using a smart antenna in mobile telecommunications networks

机译:在移动电信网络中使用智能天线增强动态容量

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摘要

This work describes an investigation into the performance of antennas for mobile base station applications and techniques for improving the coverage and capacity within a base station cell. The work starts by tracing the development of mobile systems, both in technical and commercial terms, from the earliest analogue systems to present day broadband systems and includes anticipated future developments. This is followed by an outline of how smart antenna systems can be utilised to improve cell coverage and capacity. A novel smart antenna system incorporating an array of slant ± 450 dual- polarised stacked patch elements four columns wide excited by a novel multi-beam forming and beam shaping network has been designed, simulated and implemented. It is found that for an ideal smart antenna array, four narrow overlapping beams, one wide “broadcast channel” beam and right and left shaped beams can be provided. Results are presented for the simulation of the smart antenna system using CST EM simulation software which inherently includes mutual coupling and the effects of a truncated ground plane on the element patterns. The results show some significant changes to the desired set of coverage patterns and various mutual coupling compensation techniques have been reviewed. An improved design technique has been developed for compensating the performance degrading effects of mutual coupling and finite ground plane dimensions in microstrip antenna arrays. The improved technique utilises combination of two previously known techniques: complex excitation weights compensation by inversion of the array mutual coupling scattering matrix and the incorporation of a WAIM (wide angle impedance matching) sheet. The technique has been applied to a novel multi-beam smart antenna array to demonstrate the efficacy of the technique by electromagnetic simulation. In addition, a demonstrator array has been constructed and tested which has yielded a positive conformation of the simulation results. For the developed demonstrator array which provides seven different beams, beams “footprints” have been predicted both for free space propagation and for urban propagation to evaluate the dynamic capacity performance of the smart antenna in a 3G mobile network. The results indicate that sector capacity can be dynamically tailored to user demand profiles by selection of the appropriate beam patterns provided by the novel smart antenna system.
机译:这项工作描述了对用于移动基站应用的天线性能以及用于改善基站小区内的覆盖范围和容量的技术的研究。这项工作首先从技术上和商业上追踪移动系统的发展,从最早的模拟系统到当今的宽带系统,并包括预期的未来发展。接下来是如何利用智能天线系统改善小区覆盖范围和容量的概述。设计,模拟和实现了一种新颖的智能天线系统,该系统结合了由新型新颖的多波束成形和波束成形网络激发的四列宽的±450倾斜双极化堆叠式贴片元件阵列。已经发现,对于理想的智能天线阵列,可以提供四个窄的重叠波束,一个宽的“广播信道”波束以及左右形状的波束。给出了使用CST EM仿真软件对智能天线系统进行仿真的结果,该软件固有地包括相互耦合以及截短的接地平面对单元方向图的影响。结果表明,所需的覆盖模式集发生了一些重大变化,并且已经审查了各种互耦补偿技术。已经开发出一种改进的设计技术,以补偿微带天线阵列中相互耦合和有限接地平面尺寸的性能下降影响。改进的技术利用了两种先前已知技术的组合:通过阵列互耦合散射矩阵的求逆和WAIM(广角阻抗匹配)片的结合来进行复杂的激励权重补偿。该技术已应用于新型多波束智能天线阵列,以通过电磁仿真证明该技术的有效性。另外,已经构造并测试了演示器阵列,该演示器阵列对模拟结果产生了肯定的构象。对于提供七个不同波束的已开发演示器阵列,已经预测了波束“足迹”用于自由空间传播和城市传播,以评估3G移动网络中智能天线的动态容量性能。结果表明,可以通过选择新型智能天线系统提供的适当波束方向图,根据用户需求概况动态调整扇区容量。

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