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A Transmission Line Method to Compute the Far-Field Radiation of Arbitrary Hertzian Dipoles in a Multilayer Structure Embedded With PEC Strip Interfaces

机译:嵌入PEC条形界面的多层结构中任意赫兹偶极子远场辐射的传输线方法

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摘要

A transmission line (TL) method was proposed to compute the far-field radiation of Hertzian dipoles in a multilayer dielectric structure previously. This method is generalized here to deal with a structure embedded with perfectly electric conducting (PEC) strip interfaces. The problem is solved by analyzing an equivalent network, where each PEC strip interface is mapped into a four-port network, and each dielectric layer is mapped into two two-port networks for transverse electric (TE) and transverse magnetic (TM) modes. The S matrix of a four-port network is obtained analytically by applying the asymptotic boundary conditions. As an application, the PEC strip interfaces are used to reduce the cross polarization or rotate the polarization of a dielectric resonator antenna (DRA). In addition, the TL method is valid for a structure with any type of homogeneous and reciprocal layers whose S matrices are known. It is also able to solve two kinds of problems which cannot be done by a full-wave analysis equipped with a periodic boundary condition. Furthermore, the investigation of the system matrix singularity helps us to avoid the cavity mode in designing a radiating structure.
机译:提出了一种传输线(TL)方法来预先计算多层介电结构中赫兹偶极子的远场辐射。在此,此方法被通用化以处理嵌入有完美导电(PEC)条形界面的结构。通过分析等效网络可以解决该问题,在该网络中,每个PEC条带接口都映射为一个四端口网络,每个介电层都映射为两个两个端口的横向电(TE)和横向磁(TM)模式的网络。通过应用渐近边界条件,解析获得四端口网络的S矩阵。作为一种应用,PEC条形接口可用于减少电介质谐振器天线(DRA)的交叉极化或旋转极化。此外,TL方法对于具有S矩阵已知的任何类型的均质和互易层的结构均有效。它也能够解决两种问题,而这些问题是无法通过配备周期性边界条件的全波分析来完成的。此外,对系统矩阵奇异性的研究有助于我们在设计辐射结构时避免使用腔模。

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