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Radiowave propagation and antennas for high data rate mobile communications in the 60 GHz band

机译:60 GHz频带中用于高数据速率移动通信的无线电波传播和天线

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摘要

The 60 GHz MIMO systems are seen as some of the best candidates for the implementation of future high data-rate short range communications systems such as wireless personal area networks (WPAN). Although the performance of MIMO systems has been studied thoroughly theoretically and experimentally at lower frequencies like at 2 and 5 GHz, there is a clear lack of measurement data and experimental performance evaluations of MIMO techniques at 60 GHz. Furthermore, more effort is still needed in the design and evaluation of compact low cost 60 GHz antennas for communication applications. In the first part of the thesis, the first 60 GHz MIMO channel measurement system is presented. It is based on a previously developed 2 and 5 GHz sounder and frequency converters. This system uses virtual antenna arrays to create the channel matrix. A measurement campaign is reported. In order to improve the delay resolution, two other MIMO measurement systems are presented, based on an ultra wide band (UWB) sounder and a vector network analyzer (VNA). Those systems allow full characterization of the MIMO channel in the delay and angular domains. In the second part of this work, the performance of multi-antenna techniques is evaluated based on the measurement data obtained in the first part of the thesis. Three of the most promising multi-antenna techniques, namely MIMO, antenna selection MIMO, and beam steering, are analyzed and compared. The presented results indicate that the mutual information of the measured MIMO channel is quite close to that of the independent and identically distributed (i.i.d.) MIMO Rayleigh channel. Furthermore, in realistic conditions it is seen that MIMO-antenna selection often leads to lower mutual information than traditional MIMO with the same number of RF chains. Moreover, it is shown that when considering phase shifters with realistic losses, MIMO technique almost always outperforms beam steering technique. In the last part of the thesis a 60 GHz planar omnidirectional antenna is presented. This antenna is very suitable for communications applications since it has low profile and uses a metal layer only on one side of the substrate. Therefore, it can be manufactured easily and at very low cost. In addition, an advanced quasi full 3-D radiation pattern measurement system has been developed to evaluate probe-fed antennas. Very good measurement repeatability is reported. The radiation of the probe is analyzed and is seen to be the main limitation of the dynamic range of the measurement setup.
机译:60 GHz MIMO系统被视为实现诸如无线个人局域网(WPAN)之类的未来高数据速率短距离通信系统的最佳选择。尽管已经在较低的频率(例如2 GHz和5 GHz)上对MIMO系统的性能进行了理论和实验研究,但显然缺少MIMO技术在60 GHz时的测量数据和实验性能评估。此外,在用于通信应用的紧凑型低成本60 GHz天线的设计和评估中,仍需要付出更多的努力。在论文的第一部分,介绍了第一个60 GHz MIMO信道测量系统。它基于先前开发的2 GHz和5 GHz测深仪和变频器。该系统使用虚拟天线阵列创建信道矩阵。报告了一个衡量活动。为了提高延迟分辨率,基于超宽带(UWB)探测仪和矢量网络分析仪(VNA),提出了另外两种MIMO测量系统。这些系统允许在延迟和角度域中对MIMO信道进行全面表征。在本工作的第二部分中,基于论文第一部分中获得的测量数据评估了多天线技术的性能。分析并比较了三种最有前途的多天线技术,即MIMO,天线选择MIMO和波束控制。呈现的结果表明,测得的MIMO信道的互信息与独立且均匀分布的(即i.d.)MIMO瑞利信道的互信息非常接近。此外,在现实条件下,可以看出,与具有相同数量RF链的传统MIMO相比,MIMO天线的选择通常会导致相互信息较低。而且,表明当考虑具有实际损耗的移相器时,MIMO技术几乎总是优于波束控制技术。论文的最后一部分提出了一种60 GHz平面全向天线。该天线非常薄,并且仅在基板的一侧使用金属层,因此非常适合通信应用。因此,可以容易地并且以非常低的成本来制造它。另外,已经开发了先进的准全3D辐射方向图测量系统来评估探针馈电天线。报告了非常好的测量重复性。对探头的辐射进行了分析,并认为这是测量设置动态范围的主要限制。

著录项

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    Ranvier Sylvain;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 en
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