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From Kirchoff to Lorentz-Modifying Circuit Theory for Microwave and mm-wave Structures

机译:从基尔霍夫到洛伦兹-微波和毫米波结构的修改电路理论

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Microwave and mm-wave designs require circuit parameters, which are applicable at high frequencies, where the conventional transmission line theory has failed to provide correct results. The traditional remedy is to add spurious capactions and inductors at vulnerable locations, such as line discontinuities and terminations. These parameters are hitherto extracted from electrostatic field solutions (1). When the frequency becomes so high that the statically extracted parameters lose their effectiveness, the field theorists have decided to solve the problem wiht full wave formulations. They may have succeeded in solving the feeld problems (2,3), but are not able to convert the field results into parameters that are usefulto circuit designers. This paper presents a procedure of parameter extraction from dynamic field solutions. The parameters are inductors, capacitors and dependent sources, which are all traditional components in circuit theory. When those circuit parameters are connceted and solved, they reconstruct the currents and voltages of the dynamic field solutions.
机译:微波和毫米波设计需要电路参数,这些参数适用于高频,而传统的传输线理论无法提供正确的结果。传统的补救方法是在易受干扰的位置(例如线路不连续和端接)处添加寄生电容和电感。迄今为止,这些参数是从静电场解(1)中提取的。当频率变得很高以至于静态提取的参数失去作用时,现场理论家决定采用全波公式解决问题。他们可能已经成功解决了所感觉到的问题(2,3),但无法将现场结果转换为对电路设计人员有用的参数。本文提出了从动态场解中提取参数的过程。参数是电感器,电容器和相关源,它们都是电路理论中的传统组件。当这些电路参数被考虑和求解时,它们将重构动态场解的电流和电压。

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