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Miniaturization and evaluation methods of mobile terminal antenna structures

机译:移动终端天线结构的小型化和评估方法

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摘要

In recent years, the trend in the mobile communications market has been towards thinner and mechanically more complex terminal devices, which are able to operate in several wireless systems. Due to this development, miniaturization and performance enhancement of internal mobile terminal antennas have become major challenges for the industry of the field. Not only should an internal antenna be small in size and broadband, it must also be able to ensure reliable power transmission in a real multipath propagation environment. A well-known way to improve the reliability of a radio connection is to use multi-antenna reception in the mobile terminal. In multiple-input multiple-output (MIMO) systems, multiple antennas are additionally used at the base station. In both cases, fast and reliable methods are needed for the performance evaluation of multi-antenna terminals.In the first part of this thesis, the main benefits, drawbacks and applications of coupling element based mobile terminal antenna structures are studied, with special emphasis on antenna miniaturization. Optimum shaping and placement of capacitive coupling elements are first studied in this work. Next, it is demonstrated by simulations and measurements that the bandwidth-to-volume ratio of a mobile terminal antenna structure can be improved significantly by using optimized coupling elements instead of traditional self-resonant antenna elements. To facilitate the implementation of coupling element based multi-resonant antenna structures, a theoretical study on the dual-resonant impedance matching of non-resonant coupling elements is also presented. The feasibility of coupling elements for multi-band terminals is demonstrated with a novel quad-band GSM antenna, which consumes a total volume of only 0.7 cm3. Finally, a novel frequency tunable matching circuitry designed for non-resonant coupling elements is introduced.In this work, also the bandwidth, efficiency in talk position, and SAR (specific absorption rate) of mobile phone antennas are studied as a function of frequency over wide frequency band (0.6 GHz - 6 GHz) by applying the idea of coupling elements. The results show that below 3 GHz the three parameters are strongly affected by the resonant wavemodes of the chassis, whereas above 3 GHz, the wavemodes of the coupling element dominate. In addition to the above, the resonant wavemodes of the chassis of a clamshell phone are investigated in this work by using coupling elements. The results bring out several challenges, such as a non-radiating resonance, that an antenna designer may face with clamshell phones.The second part of this thesis concentrates on the performance evaluation of mobile terminal multi-antenna configurations. First, the accuracy of a novel measurement based antenna test bed (MEBAT) is thoroughly studied. After this, the performance of several mobile terminal multi-antenna configurations is systematically investigated using the MEBAT. The emphasis is kept on the power reception properties (effective array gain or EAG) of the multi-antenna configurations. An accurate and fast theoretical way of predicting the median EAG of an antenna configuration is proposed in the work. Based on a comprehensive analysis of the theoretical and empirical EAG results, guidelines for optimum radiation pattern characteristics of a multi-antenna configuration are given. Based on the eigenvalue dispersion and capacity results obtained in the studied MIMO environments, it is concluded that it may be difficult to affect the spatial multiplexing properties of a MIMO system by means of handset antenna design. The presented results indicate that a handset antenna designer should mainly focus on maximizing the EAG.
机译:近年来,移动通信市场的趋势已朝着能够在多个无线系统中运行的更薄和机械更复杂的终端设备发展。由于这种发展,内部移动终端天线的小型化和性能增强已经成为该领域工业的主要挑战。内部天线不仅要小巧,宽带,而且还必须能够确保在实际的多径传播环境中进行可靠的功率传输。改善无线电连接的可靠性的公知方法是在移动终端中使用多天线接收。在多输入多输出(MIMO)系统中,基站额外使用了多个天线。在这两种情况下,都需要快速,可靠的方法来评估多天线终端的性能。在本文的第一部分,研究了基于耦合元件的移动终端天线结构的主要优点,缺点和应用,特别着重于天线小型化。在这项工作中,首先研究了电容耦合元件的最佳成形和放置。接下来,通过仿真和测量证明,通过使用优化的耦合元件代替传统的自谐振天线元件,可以显着改善移动终端天线结构的带宽/体积比。为了促进基于耦合元件的多谐振天线结构的实现,还对非谐振耦合元件的双谐振阻抗匹配进行了理论研究。新型四频GSM天线证明了用于多频带终端的耦合元件的可行性,该天线仅占用0.7立方厘米的总体积。最后,介绍了一种针对非谐振耦合元件设计的新型频率可调匹配电路。在这项工作中,还研究了手机天线的带宽,通话位置效率和SAR(比吸收率)随频率变化的函数。通过应用耦合元件的想法在宽频带(0.6 GHz-6 GHz)范围内。结果表明,在3 GHz以下,这三个参数受机架的共振波模强烈影响,而在3 GHz以上,则耦合元件的波模占主导地位。除上述之外,在这项工作中,通过使用耦合元件研究了翻盖式电话机壳的共振波模。结果带来了天线设计人员可能面对翻盖手机的一些挑战,例如非辐射共振。本文的第二部分着重于移动终端多天线配置的性能评估。首先,对新型基于测量的天线测试台(MEBAT)的准确性进行了深入研究。此后,使用MEBAT系统地研究了几种移动终端多天线配置的性能。重点放在多天线配置的功率接收特性(有效阵列增益或EAG)上。在工作中,提出了一种准确快速的预测天线配置中值EAG的理论方法。在对EAG理论和经验结果进行全面分析的基础上,给出了多天线配置的最佳辐射方向图特性的指南。根据在研究的MIMO环境中获得的特征值色散和容量结果,得出结论,可能难以通过手机天线设计来影响MIMO系统的空间复用特性。给出的结果表明,手机天线设计人员应主要集中在最大化EAG上。

著录项

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    Villanen Juha;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 en
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