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Design for Co-planar MIMO LTE antenna in handset device application

机译:手机设备应用中共面MIMO LTE天线的设计

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A novel co-planner multiple-input-multiple-output (MIMO) antenna system combined with decoupling structure for enhancing the port isolation between two antennas at penta Long-Term Evolution (LTE) bands 700MHz, 900MHz, 1800MHz, 2300MHz and 2600MHz operation in this paper. For compact single antenna, the design is used to building a single multi-band antenna with 75×18×1.6 . In the decoupling work, we uses two meander resonators to handle the lower band isolation, and then adding a cross-shaped ground structure to furthermore isolation enhancement in higher two bands. Both of the measurement and simulation of S-parameters are exhibited, the average isolation can be improved more than 13 dB in desired bands with wide band problems. In MIMO antenna system, antennas are utilized in simultaneously, and the results of simulation antenna efficiency in single excitation can achieves to 90%, 53% and 78% in triple bands operation at best matching point, respectively. It is still remained 63.8%, 66% and 65% with adding the decoupling element. The proposed antenna is suitable for some portable MIMO application.
机译:一种新颖的共同规划器多输入多输出(MIMO)天线系统与去耦结构相结合,可增强五种长期演进(LTE)在700MHz,900MHz,1800MHz,2300MHz和2600MHz工作的五天线的两个天线之间的端口隔离。这篇报告。对于紧凑的单天线,该设计用于构建75×18×1.6的单个多频段天线。在去耦工作中,我们使用两个曲折谐振器来处理较低频段的隔离,然后添加十字形接地结构以进一步提高较高两个频段的隔离度。展示了S参数的测量和仿真,在具有宽带问题的所需频带中,平均隔离度可以提高13 dB以上。在MIMO天线系统中,天线是同时使用的,在最佳匹配点的三频运行中,单次激励的仿真天线效率结果可以分别达到90%,53%和78%。加上去耦元素后,它仍然保持63.8%,66%和65%的比例。拟议的天线适用于某些便携式MIMO应用。

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