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首页> 外文期刊>Microwaves, Antennas & Propagation, IET >Characteristic mode analysis applied to reduce the mutual coupling of a four-element patch MIMO antenna using a defected ground structure
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Characteristic mode analysis applied to reduce the mutual coupling of a four-element patch MIMO antenna using a defected ground structure

机译:特性模式分析用于减少使用缺陷接地结构的四元件贴片MIMO天线的相互耦合

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摘要

A multiple-input-multiple-output (MIMO) microstrip patch antenna array of four elements is proposed to cover the 5.8 GHz WLAN band. The characteristic mode analysis is carried out to design a defected ground structure that improves the MIMO performance without impacting negatively the radiation characteristics of the four-element array. Simulations and measurements demonstrate that the implemented prototype reaches a maximum mutual coupling of -32 dB and a gain-per-element of 5.3 dB with good MIMO attributes, surpassing many other proposals in the antenna literature: maximum envelope correlation coefficient of 0.0001, diversity gain very close to 10 dB, capacity loss (C-loss) near to 0.0023 bps/Hz at the resonant frequency, multiplexing efficiency (eta(muxij)) of 0.935, and a total active reflection coefficient weakly dependent on the excitation phases. The presented design is proposed for operation on the IEEE 802.11a standard.
机译:提出了由四个元素组成的多输入多输出(MIMO)微带贴片天线阵列,以覆盖5.8 GHz WLAN频段。进行特征模式分析以设计缺陷接地结构,该缺陷接地结构可提高MIMO性能,而不会负面影响四元素阵列的辐射特性。仿真和测量表明,所实现的原型具有良好的MIMO属性,达到了-32 dB的最大互耦和5.3 dB的每单位增益,超过了天线文献中的许多其他建议:最大包络相关系数为0.0001,分集增益非常接近10 dB,在谐振频率下的容量损耗(C损耗)接近0.0023 bps / Hz,复用效率(eta(muxij))为0.935,总的有源反射系数几乎不依赖于激励相位。提出的设计建议用于IEEE 802.11a / n标准。

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