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Complete network characterisation of stratified planar circuits using the method of moments technique: an integrated approach to lumped and wave ports

机译:使用矩量法对分层平面电路进行完整的网络表征:集总端口和波端口的集成方法

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摘要

This study gives a full treatment of the network characterisation of multi-port planar circuits embedded in shielded stratified media with an integrated approach to lumped ports and wave ports. The details of the mathematical formulation for the retrieval of scattering parameters are given in three cases: networks possessing only lumped ports, networks possessing only wave ports and networks with a combination of both types. A detailed description of the computer algorithm is presented to help the reader easily reproduce our results. The implementation of combined ports in the framework of planar multi-layered structures is particularly useful in analysing systems that have waveguide connections and planar circuitries in their structure, such as cavity-backed antennas and their associated feeding systems, dielectric resonator antennas or compound microwave filters. In such structures one can divide the system into the waveguide structure and the planar circuitries and analyse each part separately with an appropriate and efficient numerical technique. Network characterisations will be consequently communicated at the port interfaces. This strategy enhances the total performance of the computational scheme to a great extent, while not affecting the accuracy of the full-wave analysis.
机译:这项研究通过集总端口和波端口的集成方法,对屏蔽分层介质中嵌入的多端口平面电路的网络特性进行了全面处理。在三种情况下给出了用于获取散射参数的数学公式的详细信息:仅具有集总端口的网络,仅具有波端口的网络以及两种类型的组合的网络。介绍了计算机算法的详细描述,以帮助读者轻松重现我们的结果。在平面多层结构的框架中实现组合端口对于分析结构中具有波导连接和平面电路的系统特别有用,例如背腔天线及其相关的馈电系统,电介质谐振器天线或复合微波滤波器。在这样的结构中,可以将系统划分为波导结构和平面电路,并使用适当和有效的数值技术分别分析每个部分。因此,网络特性将在端口接口处传达。该策略在不影响全波分析准确性的情况下,极大地提高了计算方案的总体性能。

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