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Novel and Efficient Parasitic Decoupling Network for Closely Coupled Antennas

机译:新型高效耦合天线的寄生去耦网络

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摘要

A novel and efficient parasitic decoupling network (PDN) is proposed for closely coupled antennas in this paper, which provides a new perspective and approach to design DNs based on the parasitic decoupling concept. The PDN is composed of sections of transmission lines (TLs) and reactive components, allowing additional power-traveling paths. With the TL lengths and reactive-component reactances being precisely determined, the traveling power from one antenna to another could cancel out the undesired power wave induced by mutual coupling, resulting in the high port isolation. The decoupling theory is rigorously derived with the design procedure of the PDN systematically described in connection with two examples of the two-and three-element monopole arrays. The measurement results show that good impedance matching for each antenna port, isolations of more than 25 dB, total efficiencies of more than 64%, and envelop correlation coefficients (ECCs) of less than 0.07 are attained simultaneously for both examples using the proposed PDN. The results verified the decoupling theory and proved the PDN concept.
机译:提出了一种新颖高效的紧密耦合天线寄生去耦网络(PDN),为基于寄生去耦概念的DN设计提供了新的思路和方法。 PDN由传输线(TL)和无功组件组成,从而允许附加的功率传播路径。在精确确定TL长度和电抗分量电抗的情况下,从一个天线到另一个天线的传播功率会抵消相互耦合引起的不希望有的功率波,从而导致端口隔离度高。去耦理论是通过结合两元和三元单极子阵列的两个例子系统描述的PDN的设计程序严格推导的。测量结果表明,对于使用建议的PDN的两个示例,同时获得了每个天线端口的良好阻抗匹配,大于25 dB的隔离度,大于64%的总效率以及小于0.07的包络相关系数(ECC)。结果验证了去耦理论并证明了PDN概念。

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