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A New Methodology of Antenna Decoupling by Common and Differential Modes Cancellation

机译:通过常见和差分模式取消的天线去耦的新方法

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The mutual coupling effect between antenna elements will degrade the diversity performance of multiinput multi-output (MIMO) systems and deteriorate the antenna efficiency and beamforming performance of antenna arrays. To address this problem, many antenna decoupling techniques, such as decoupling network, defected ground structures, parasitic elements, neutralization line, and decoupling meta-surface, have been proposed in the last decades to reduce the mutual coupling between antenna elements. However, the additional decoupling structure will simultaneously change the reflection coefficients and isolations; thus, multiple iterations have to be performed to achieve a good impedance matching and isolation synchronously, making the decoupling process complicated and time-consuming. In this paper, a simplified antenna decoupling methodology based on the common mode (CM) and differential mode (DM) cancellation is proposed. It is theoretically proved that, the mutual coupling between two antenna elements can be eliminated totally when the corresponding CM and DM impedances are the same. By strategically exploiting the orthogonal field properties of the CM and DM, the CM and DM impedances can be tuned independently without iterations. And the structure for CM and DM impedance matching is exactly the structure for antenna decoupling. Therefore, many new decoupling structures beyond the conventional decoupling schemes can be achieved. The proposed decoupling methodology can be applied to various antennas, such as closely-spaced dipoles, monopoles, inverted-F antennas, patch antennas, and planar-inverted-F antennas, which is a promising candidate for basestation, mobile terminal, and phased array applications.
机译:天线元件之间的互联耦合效应将降低多量多输出(MIMO)系统的分集性能,并劣化天线阵列的天线效率和波束形成性能。为了解决这个问题,在过去几十年中提出了许多天线去耦技术,例如解耦网络,缺陷的地面结构,寄生元件,中和线和去耦元表面,以减少天线元件之间的相互耦合。然而,额外的去耦结构将同时改变反射系数和隔离;因此,必须执行多次迭代以同步地实现良好的阻抗匹配和隔离,使得解耦过程复杂且耗时。本文提出了一种基于共模(CM)和差分模式(DM)取消的简化天线去耦方法。理论上证明,当相应的CM和DM阻抗相同时,可以完全消除两个天线元件之间的相互耦合。通过战略性地利用CM和DM的正交字段属性,可以在没有迭代的情况下独立调谐CM和DM阻抗。 CM和DM阻抗匹配的结构正是天线去耦的结构。因此,可以实现超出传统去耦方案的许多新的去耦结构。所提出的去耦方法可以应用于各种天线,例如紧密间隔的偶极子,垄断,倒-f天线,贴片天线和平面反转-f天线,这是基站,移动终端和相控阵的有希望的候选者应用程序。

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