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Monikaistaiset ja ympäristölle epäherkät matkapuhelinantennit

机译:多频带和对环境不敏感的手机天线

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摘要

The number of antennas in small handsets has been increasing, while the volume reserved for the antennas has remained the same or even reduced. Consequently, antennas become easily inefficient, thereby lowering the data rate and coverage. An additional challenge is that the antenna should be insensitive to the way the handset is held by the user. The results of this doctoral thesis can be used to develop small-sized, multiband and efficient handset antennas with good robustness against environmental changes caused for instance by the user's hand.The first part of the thesis introduces novel handset antennas that have state-of-the-art performance in terms of antenna volume, impedance bandwidth and efficiency. A design strategy for 4th generation (4G) handset antennas and a new method to analyze the suitability of an antenna geometry for frequency tuning are introduced. Furthermore, a novel tunable handset antenna with Multiple-Input Multiple-Output (MIMO) capability is presented. The total efficiency of the proposed tunable MIMO antenna is shown to be better than 49% across the frequencies of 698–960 MHz and better than 56% across the frequencies of 1430–2690 MHz when MicroElectroMechanical System (MEMS)-based digitally tunable capacitors are used. Finally, an effective method to achieve up to 100 dB port-to-port isolation is proposed.Different user-related challenges of handset antennas are discussed in the second part of this thesis. It is shown that a part of the hand losses can be avoided with a clever antenna design. This part also discusses the benefits and drawbacks of using either compact or large-sized antennas. A small-sized antenna can be more tolerant to user-originated losses than a largesized antenna when an effective frequency tuning method is used. Furthermore, design aspects for gaining a good multi-antenna performance with the user are discussed.Novel methods to reduce the electromagnetic exposure and the interaction between a user and a mobile handset antenna are discussed in the third part. The thesis gives the first analysis of feasibility of balanced antennas for handsets. Moreover, a novel shielding method to decrease the specific absorption rate (SAR) in the head by 81% and to improve the total efficiency by 5 dB is introduced. In the end of the thesis, a method is proposed to weaken the near-fields of handset antenna: wavetraps can be used to reduce, for example, electric field by up to 75%, resulting in improved hearing-aid compatibility (HAC) and SAR.
机译:小型手机中的天线数量一直在增加,而为天线保留的体积却保持不变甚至减少。因此,天线容易变得效率低下,从而降低了数据速率和覆盖范围。另一个挑战是天线应对用户手持手机的方式不敏感。本博士论文的结果可用于开发小型,多频段,高效的手持机天线,具有良好的鲁棒性,可抵抗用户手部造成的环境变化。论文的第一部分介绍了新型的手持机天线,它们具有良好的状态。天线体积,阻抗带宽和效率方面的先进性能。介绍了第四代(4G)手机天线的设计策略和分析天线几何形状进行频率调谐的适用性的新方法。此外,提出了一种具有多输入多输出(MIMO)功能的新型可调手机天线。当使用基于微机电系统(MEMS)的数字可调电容器时,建议的MIMO天线的总效率在698–960 MHz频率范围内优于49%,在1430–2690 MHz的频率范围内优于56%。用过的。最后,提出了一种实现高达100 dB端口到端口隔离的有效方法。本文的第二部分讨论了手机天线与用户相关的不同挑战。结果表明,采用巧妙的天线设计可以避免一部分手部丢失。本部分还讨论了使用紧凑型或大型天线的优缺点。当使用有效的频率调谐方法时,小型天线比大型天线更能容忍用户造成的损失。此外,还讨论了与用户获得良好的多天线性能的设计方面。第三部分讨论了减少电磁辐射以及减少用户与手机天线之间相互作用的新颖方法。本文首先对手机平衡天线的可行性进行了分析。此外,介绍了一种新颖的屏蔽方法,可将头部的比吸收率(SAR)降低81%,并将总效率提高5 dB。在论文的最后,提出了一种减弱手机天线近场的方法:例如,可以使用陷波器将电场降低多达75%,从而改善助听器的兼容性(HAC)和SAR。

著录项

  • 作者

    Ilvonen, Janne;

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  • 年度 2014
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  • 原文格式 PDF
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