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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Green's impedance function approach for propagation characteristics of generalized striplines and slotlines on nonlayered substrates
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Green's impedance function approach for propagation characteristics of generalized striplines and slotlines on nonlayered substrates

机译:格林的阻抗函数方法用于广义带状线和缝隙线在非分层基板上的传播特性

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摘要

A newly proposed generalized full-wave space-domain integral equation technique incorporating dyadic Green's impedance function and a new set of basis functions are presented for the analysis of striplines and slotlines arbitrarily integrated on multiple nonlayered sustrates. The generalized full-wave integral equation technique is validated by conducting convergence study and several case studies. The theoretical dispersion characteristic of the transmission lines obtained here are in very good agreement with the published and measured data for the modified Microslab and the microstrip proximity effect near substrate edge. For the slotline type problem, where a new set of current basis functions must be derived to be incorporated into Green's impedance function approach, the new approach presented here shows that the corresponding propagation characteristics thus obtained are also in excellent agreement with those reported in the available literature, which normally used the slot electric fields as the unknowns. To explain bow general the present formulation is, it can be reduced to the well-known spectral domain formulation for any guided-wave structure containing only layered substrates.
机译:提出了一种新的广义全波空域积分方程技术,该技术结合了格林的阻抗函数和一组新的基函数,用于分析任意集成在多个非层状基板上的带状线和缝线。通过进行收敛性研究和几个案例研究,验证了广义全波积分方程技术。此处获得的传输线的理论色散特性与修改后的Microslab的已发布和测量数据以及靠近基板边缘的微带接近效应非常吻合。对于时隙线类型的问题,必须导出一组新的当前基函数以将其合并到格林的阻抗函数方法中,此处介绍的新方法表明,由此获得的相应传播特性也与现有报告中的那些完全一致。文献,通常使用缝隙电场作为未知数。为了解释弓形,本发明的配方可以简化为仅包含层状基质的任何导波结构的众所周知的光谱域配方。

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