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Antenna Decoupling by Common and Differential Modes Cancellation

机译:天线通过共同和差分模式取消取消

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摘要

In this article, a general decoupling method based on a new perspective of common mode (CM) and differential mode (DM) cancellation is proposed. For two closely spaced antennas, the mutual coupling effect can be analyzed and solved by exciting them simultaneously with in-phase (CM) and out-of-phase (DM) signals. It is theoretically proved that, if CM and DM impedances are the same, the mutual coupling effect between two separated antennas can be totally eliminated. Therefore, we can solve the coupling problem by CM and DM impedance analysis and exploit the unique field properties of characteristic modes to assist in antenna decoupling in a physical intuitive way. To validate the feasibility of this method, two practical design examples, including the decoupling between closely spaced dipole antennas and planar inverted-F antennas, are proposed. Both design examples have demonstrated that the proposed method can provide a systemic design guideline for antenna decoupling and achieve better decoupling performance compared to the conventional decoupling techniques. We forecast the proposed decoupling scheme, with a simplified decoupling procedure, has great potential for the applications of antenna arrays and multi-input multi-output (MIMO) systems.
机译:在本文中,提出了一种基于共模(CM)和差分模式(DM)取消的新透视的一般去耦方法。对于两个紧密间隔的天线,可以通过以同相(cm)和异相(DM)信号同时激发它们来分析和解决互联耦合效果。理论上证明,如果CM和DM阻抗相同,则可以完全消除两个分离的天线之间的互联耦合效果。因此,我们可以通过CM和DM阻抗分析解决耦合问题,并利用特征模式的独特场特性,以辅助以物理直观的方式辅助天线去耦。为了验证该方法的可行性,提出了两个实际的设计示例,包括紧密间隔的偶极天线和平面倒立-F天线之间的去耦。两个设计示例都证明了与传统的去耦技术相比,该方法可以提供用于天线去耦的系统设计指南,并实现更好的去耦性能。我们预测建议的解耦方案,具有简化的去耦程序,对天线阵列和多输入多输出(MIMO)系统的应用具有很大的潜力。

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