节点文献
W波段行波管的高效率方法
High Efficiency Method in W Band Traveling Wave Tube
【Author】 WANG Zi-cheng;LI Hai-qiang;XIE Wen-qiu;TIAN Hong;MA Si-yuan;Institute of Electronics, Chinese Academy of Science;Graduate University of Chinese Academy of Science;
【机构】 中国科学院电子学研究所; 中国科学院大学;
【摘要】 将相速再同步技术引入基于双排矩形梳状慢波结构的W波段行波管中,利用CST计算了所需不同周期的慢波结构的色散和偶合阻抗,在此基础上用MTSS模拟计算了注波互作用。结果证实:对于由两段周期均匀的慢波结构构成的W波段行波管,在90~98GHz范围内输出功率为48.92W~56.44W,电子效率为6.04%~6.96%,增益大于49d B;而对于由7段周期跳变的慢波结构构成的W波段行波管,在90~98GHz范围内输出功率为57.06W~98W,电子效率为6.98%~11.99%,增益大于50d B;两者相比,电子效率提高1%~4%。
【Abstract】 With re-synchronization included, dispersions and interaction impedances of some staggered double rectangular gating with various periods are calculated by CST, then beam-wave interaction of two W band traveling wave tube based on those structures is simulated by MTSS. The results show that one W band traveling wave tube based on two sections of staggered double rectangular gating with uniform period has output power of 48.92W~56.44 W,electron efficiency of 6.04%~6.96% and gain of over 49 d B within 90~98GHz, meanwhile another W band traveling wave tube based on 7 sections of staggered double rectangular gating with various periods has output power of 57.06W~98W,electron efficiency of 6.98%~11.99% and gain of over 50 d B, and the improvement of electron efficiency is 1%~4%。
【Key words】 W band traveling wave tube; phase velocity re-synchronization technology; staggered double rectangular gating; Dispersion; interaction impedance;
- 【会议录名称】 2014年全国电磁兼容与防护技术学术会议论文集(上)
- 【会议名称】2014年全国电磁兼容与防护技术学术会议
- 【会议时间】2014-07-21
- 【会议地点】中国湖南常德
- 【分类号】TN124
- 【主办单位】中国电子学会微波分会、中国工程物理研究院复杂电磁环境科学与技术重点实验室、总装备部电磁兼容及防护技术专业组、天线与微波技术重点实验室