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Radio frequency and microwave design methods for mobile communications

机译:移动通信的射频和微波设计方法

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摘要

The Global System for Mobile communications (GSM), which covers 54% of the world's mobile market, evolved into the General Packet Radio Service (GPRS). The thesis addresses interference suppression using new radio frequency (RF) and microwave design methods for GSM and GPRS. The overall outcome is interference reduction and enhanced network capacity, leading to superior quality of service (QoS) for wider area coverage. The main results can be summarized as follows :* Design, manufacturing and characterisation measurements of new compact filters for GSM and GPRS base stations in order to reduce the out-of-band interference. It is shown that filters with novel microstrip resonators - dual mode filters and cross coupled filters - provide both a high degree of miniaturisation and narrow bandwidth.* Development of a new 3-D Finite-Difference Time-Domain (FDTD) design method for new microstrip filters. A non-homogeneous Perfectly Matched Layer (NH-PML) was implemented for Absorbing Boundary Conditions (ABC) to increase the accuracy of the FDTD method. Signal estimation techniques were developed to speed up FDTD computations. A novel design method based on neural networks (NN) and FDTD was implemented to reduce the total design time.* Investigation of High Temperature Superconductors (HTS) thin film resonators and antennas at microwave frequencies. High Q-factor HTS devices considerably enhance both the front-ends sensitivity and selectivity of wireless receivers.* Design, manufacturing and testing of radio frequency (RF) electronics for 16 elements GSM and GPRS Smart Antenna for multipath fading mitigation and for in-band interference including co-channel interference (CCI) suppression.
机译:覆盖了全球54%的移动市场的全球移动通信系统(GSM)演变为通用分组无线服务(GPRS)。本文针对GSM和GPRS使用新的射频(RF)和微波设计方法来解决干扰抑制问题。总体结果是降低了干扰并增强了网络容量,从而为更广泛的区域覆盖带来了卓越的服务质量(QoS)。主要结果可总结如下:*用于GSM和GPRS基站的新型紧凑型滤波器的设计,制造和特性测量,以减少带外干扰。结果表明,具有新型微带谐振器的滤波器-双模滤波器和交叉耦合滤波器-提供了高度的小型化和窄带宽。*为新的3-D有限差分时域(FDTD)设计方法的开发微带滤波器。为吸收边界条件(ABC)实现了非均匀的完美匹配层(NH-PML),以提高FDTD方法的准确性。开发了信号估计技术以加快FDTD计算。实施了一种基于神经网络(NN)和FDTD的新颖设计方法,以减少总设计时间。*研究微波频率下的高温超导体(HTS)薄膜谐振器和天线。高Q因数的HTS设备大大提高了无线接收器的前端灵敏度和选择性。*设计,制造和测试16个元素GSM和GPRS智能天线的射频(RF)电子产品,以减轻多径衰落和带内干扰干扰,包括同频干扰(CCI)抑制。

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