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Design and Performance Evaluation of Multiband MIMO Antennas

机译:多频带MIMO天线的设计与性能评估

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Recently various wireless local area network (WLAN) technologies have been unified by means of multiband antenna. The challenge is to optimize the size of the multiband antenna for its inclusion in a small hand held terminal, while maintaining its performance characteristics. The challenge is further intensified as the multiple element antenna (MEA) are considered for compact diversity and multiple input multiple output (MIMO) terminal devices. MIMO is considered as a solution to overcome the problems of low data rates and maximize the channel bandwidth. Moreover, it also addresses the problems of multipath fading. Unfortunately, in real and robust environments there is a tradeoff between number of MEA and MIMO performance. This is primarily due to the mutual coupling between the antennas. In this paper, design of multiband MIMO antennas and its performance evaluation has been proposed for the portable wireless communication terminals. To study the effects of mutual coupling, the two-element antenna has been arranged into four MEA configurations. The Meander-Koch monopole antenna element has been used in the design of MEA. The single element meander-Koch monopole antenna covers the entire IEEE 802.11 a/b/g standard. However, due to the lack of an isolation mechanism and effective spatial/pattern diversity technique(s), all the MEA configurations depict poor isolation between their ports. Moreover, a shift in resonant frequency bands has also been noticed.
机译:最近各种无线局域网(WLAN)技术通过多频带天线统一。挑战是为了优化多频带天线的大小,以便其包含在小手持终端中,同时保持其性能特性。由于考虑了多个元件天线(MEA),进一步加剧了挑战,因为考虑了用于紧凑的分集和多个输入多输出(MIMO)终端设备。 MIMO被认为是克服低数据速率问题并最大化信道带宽的解决方案。此外,它还解决了多路径衰落的问题。不幸的是,在真实和强大的环境中,MEA和MIMO性能之间存在权衡。这主要是由于天线之间的相互耦合。在本文中,已经提出了用于便携式无线通信终端的多频带MIMO天线的设计及其性能评估。为了研究相互耦合的影响,两个元件天线已被布置成四个MEA配置。刮刀-Koch单极天线元件已用于MEA的设计。单个元素曲折 - Koch单极天线覆盖整个IEEE 802.11 A / B / G标准。然而,由于缺乏隔离机制和有效的空间/模式多样性技术,所有MEA配置都描绘了其端口之间的差别差。此外,还被注意到谐振频带的偏移。

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