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A general electromagnetic simulation tool to predict the microwave nonlinear response of planar, arbitrarily-shaped HTS structures

机译:一种通用的电磁仿真工具,用于预测平面,任意形状的HTs结构的微波非线性响应

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摘要

This work describes a simulation tool being developed at UPC to predict the microwave nonlinear behavior of planar superconducting structures with very few restrictions on the geometry of the planar layout. The software is intended to be applicable to most structures used in planar HTS circuits, including line, patch, and quasi-lumped microstrip resonators. The tool combines Method of Moments (MoM) algorithms for general electromagnetic simulation with Harmonic Balance algorithms to take into account the nonlinearities in the HTS material. The Method of Moments code is based on discretization of the Electric Field Integral Equation in Rao, Wilton and Glisson Basis Functions. The multilayer dyadic Green's function is used with Sommerfeld integral formulation. The Harmonic Balance algorithm has been adapted to this application where the nonlinearity is distributed and where compatibility with the MoM algorithm is required. Tests of the algorithm in TM010 disk resonators agree with closed-form equations for both the fundamental and third-order intermodulation currents. Simulations of hairpin resonators show good qualitative agreement with previously published results, but it is found that a finer meshing would be necessary to get correct quantitative results. Possible improvements are suggested
机译:这项工作描述了UPC正在开发的一种仿真工具,用于预测平面超导结构的微波非线性行为,而对平面布局的几何形状几乎没有限制。该软件旨在适用于平面HTS电路中使用的大多数结构,包括线路,贴片和准集总微带谐振器。该工具将用于一般电磁仿真的矩量法(MoM)算法与谐波平衡算法结合在一起,以考虑高温超导材料的非线性。矩方法代码基于Rao,Wilton和Glisson基函数中电场积分方程的离散化。多层二进格林函数与Sommerfeld积分公式一起使用。谐波平衡算法已适应于此应用,在该应用中非线性分布很广,并且需要与MoM算法兼容。 TM010磁盘谐振器中算法的测试与基波和三阶互调电流的闭式方程式吻合。发夹式谐振器的仿真显示出与先前发表的结果在质量上的一致性,但是发现要获得正确的定量结果,必须进行更细的网格划分。建议可能的改进

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