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Design and Simulation of the Thermionic Emission-Based Reltron Oscillator

机译:基于热电子发射的Reltron振荡器的设计与仿真

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In this article, we describe the design and simulation of a highly efficient thermionic emission-based reltron oscillator. First, the design process of the thermionic emission-based reltron has been presented, and then the RF interaction cavity has been modeled using a commercial tool "CST Studio Suite." In the absence of an electron beam, the electromagnetic behavior of the modeled RF interaction cavity has been investigated with the help of the eigenmode solver and frequency-domain solver. In addition, the structural parametric dependence on the resonant mode frequency of the RF interaction cavity has been also investigated. The RF behavior of the designed reltron device has been simulated using particle-in-cell (PIC) solver. An electrical parametric analysis has been performed to evaluate the performance of the modeled device. Finally, the simulation results predicted that the device is capable of producing 22 MW of RF power with a pulsewidth of 5 mu s and an efficiency of 44%. For validation, the simulated results have been compared with the previously reported experimental results, we found that the result variation is less than 5%, which shows a good agreement with the reported experimental results.
机译:在本文中,我们描述了一种高效的基于热电子发射的reltron振荡器的设计和仿真。首先,介绍了基于热电子发射的reltron的设计过程,然后使用商业工具“ CST Studio Suite”对RF相互作用腔进行了建模。在没有电子束的情况下,已经借助本征模求解器和频域求解器研究了建模的RF交互腔的电磁行为。此外,还研究了结构参数对RF相互作用腔共振模式频率的依赖性。设计的reltron器件的RF行为已使用单元中粒子(PIC)求解器进行了仿真。进行了电参数分析,以评估建模设备的性能。最后,仿真结果预测该设备能够产生22 MW的RF功率,脉冲宽度为5 s s,效率为44%。为了进行验证,将模拟结果与先前报告的实验结果进行了比较,我们发现结果差异小于5%,这与报告的实验结果显示出良好的一致性。

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