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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >A computationally efficient approach to microwave circuit modelingof complex high temperature superconductor circuits
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A computationally efficient approach to microwave circuit modelingof complex high temperature superconductor circuits

机译:复杂高温超导体电路微波电路建模的高效计算方法

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摘要

A computationally efficient approach to modeling complex high temperature superconductor (HTS) microwave circuits is described which combines two-dimensional electromagnetic solutions of microwave transmission lines, incorporating a phenomenological description of HTS behavior, with conventional commercially available microwave-circuit computer-aided-design software. Internal inductance effects are known to have a substantial impact on the design and implementation of narrowband HTS circuits. Phase velocities and characteristic impedances can be well modeled using a phenomenological description of HTS superconductivity along with a generalized approximate boundary condition and a two dimensional electro-magnetic solution to the waveguiding structure. Resultant parameterized design equations can then be incorporated into standard commercially available microwave-circuit computer-aided-design software. The test case examined in detail was the superconducting channelized receiver delivered by the Naval Research Laboratory to Phase II of the High Temperature Superconducting Space Experiment. Excellent agreement was obtained between measurements made on the demultiplexer and this HTS microwave circuit modeling approach
机译:描述了一种对复杂的高温超导体(HTS)微波电路建模的高效计算方法,该方法结合了微波传输线的二维电磁解决方案,结合了HTS行为的现象学描述以及常规的市售微波电路计算机辅助设计软件。已知内部电感效应会对窄带HTS电路的设计和实现产生重大影响。可以使用现象学描述的HTS超导性以及广义近似边界条件和对波导结构的二维电磁解来很好地建模相速度和特征阻抗。然后可以将得到的参数化设计方程式合并到标准的市售微波电路计算机辅助设计软件中。详细检查的测试案例是海军研究实验室交付给高温超导空间实验第二阶段的超导通道化接收器。在解复用器上进行的测量与这种HTS微波电路建模方法之间获得了极好的一致性

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