耦合腔行波管三维整管模拟  

Three-Dimensional Whole-Tube Simulation of Coupled-Cavity Traveling-Wave Tube

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作  者:李文君[1] 许州[2] 林郁正[1] 黎明[2] 杨兴繁[2] 周霖[2] 金晓[2] 

机构地区:[1]清华大学工程物理系,北京100084 [2]中国工程物理研究院应用电子学研究所,四川绵阳621900

出  处:《原子能科学技术》2007年第6期738-741,共4页Atomic Energy Science and Technology

摘  要:电子枪是耦合腔行波管的核心部件之一,枪的电子束参数对行波管工作性能有重要影响。在使用PIC软件设计一S波段耦合腔行波管时,对电子枪进行了数值模拟,构建了行波管的三维整管计算模型,该模型包含电子枪、慢波结构、微波输入输出耦合器等部件,模拟了该S波段行波管整管的大信号注波互作用过程。模拟结果表明:在2.0~2.3GHz工作频带内,该行波管的连续波输出功率达5.9kW,效率为24%。整管模拟为行波管设计提供了依据。Electron gun is one of the key components of coupled-cavity traveling-wave tube (TWT). Its electron beam parameters have important influence on TWT performances. As a result, electron gun was firstly simulated when an S-band coupled-cavity TWT was designed using PIC software. Then, the three-dimensional simulation model of whole TWT was constructed, which consists of electron gun, slow-wave structure, microwave input and output coupler, etc. Finally, the large signal beam-wave interaction of the whole S-band TWT was simulated. Results show that the continuous wave output power reaches 5.9 kW and the efficiency reaches 24 % in the operating frequency range of 2.0-2.3 GHz. Whole-tube simulation provides reference for TWT design.

关 键 词:耦合腔行波管 注波互作用 整管模拟 PIC粒子模拟 

分 类 号:TN015[电子电信—物理电子学]

 

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