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首页> 外文期刊>IEEE Transactions on Electron Devices >Three-Dimensional Modeling of AC Space Charge for Large-Signal TWT Simulation
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Three-Dimensional Modeling of AC Space Charge for Large-Signal TWT Simulation

机译:大信号TWT仿真的交流空间电荷的三维建模

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摘要

We describe a new model for calculating the ac space charge in a linear-beam traveling wave tube (TWT) large-signal simulation code when the true three-dimensional (3-D) geometry of the interaction circuit is taken into account. We use the 3-D electromagnetic simulation code CTLSS to characterize the ac space charge fields generated by a set of test currents placed inside the periodic interaction structure. This information, expressed in matrix form, is used by the large-signal simulation codes CHRISTINE-ID and CHRISTINE-3D to compute self-consistently the additional space charge field terms due to the structure in response to the beam evolution during the simulation. We present the formulation, and describe the implementation in both CTLSS and the large-signal codes. We validate the model by comparison with the analytical sheath helix model, and evaluate the importance of including this correction for modeling a number of helix and coupled-cavity TWT devices.
机译:当描述了相互作用电路的真实三维(3-D)几何形状时,我们描述了一种用于计算线性束行波管(TWT)大信号仿真代码中的ac空间电荷的新模型。我们使用3-D电磁仿真代码CTLSS来表征由放置在周期性相互作用结构内部的一组测试电流产生的交流空间电荷场。大信号模拟代码CHRISTINE-ID和CHRISTINE-3D使用矩阵形式表示的该信息,以响应于模拟过程中的射束演化,根据结构自洽计算额外的空间电荷场项。我们介绍该公式,并描述CTLSS和大信号代码中的实现。我们通过与分析性护套螺旋模型进行比较来验证模型,并评估包括此校正对许多螺旋和耦合腔TWT设备建模的重要性。

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