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Using whole structure modes in the large-signal modeling of TWTS with arbitrary slow-wave structures

机译:在具有任意慢波结构的TWTS大信号建模中使用整体结构模式

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The increasing demand for high-power and broad-band RF sources requires that efficient simulation tools be used in their design and optimization. This demand has led to the development of highly efficient large-signal 2D codes suitable for fast and accurate modeling of Travelling Wave Tube (TWT) amplifiers based on such different types of slow-wave structures (SWSs) as coupled-cavity1 and serpentine/folded-waveguide. The success of these 2D models was partially due to the fact that particular code targeted one specific type of slow-wave structure, and this allowed for simplifications in the model description that were specific to the targeted structure. However such simplification becomes a drawback when considering any new type of SWS what requires a new effort to develop a suitable field model and implement it in a large-signal code. To eliminate this drawback we have developed a formulation based on the whole structure modes imported directly from computational electromagnetic codes or generated by using reduced-order simulation approach.
机译:对大功率和宽带射频源的需求不断增长,要求在其设计和优化中使用高效的仿真工具。这种需求已导致开发出高效的大信号2D代码,该代码适用于基于耦合腔1和蛇形/折叠等不同类型的慢波结构(SWS)的行波管(TWT)放大器的快速准确建模。 -波导。这些2D模型的成功部分归因于这样的事实,即特定代码针对一种特定类型的慢波结构,并且这可以简化模型描述中针对目标结构的简化。然而,当考虑任何新型的SWS时,这种简化成为一个缺点,这需要新的努力来开发合适的现场模型并以大信号代码实现它。为消除此缺点,我们基于直接从计算电磁代码导入或通过使用降阶模拟方法生成的整个结构模式开发了一种公式。

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