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19篇 您的检索式:作者名="Yaogen Ding"
    题名 作者 年代 出处 被引量
1CALCULATION OF NONLINEAR MAGNETIC FIELDS IN CYLINDRICALLY SYMMETRIC SYSTEM显示文摘For the calculation of non-linear magnetic fields, a simple program can be as effective as a large commercialized software package. If relaxation methods are used, they must include successive over-relaxation and under-relaxation and much attention must be paid to the relaxation factor and the interpolation. In this paper some skills are proposed on the setting of an interpolation switch and the choosing of saturation point so as to assure satisfied convergence properties. The numerical results by using these methods conform well to the tests.Wu Xunlei Chen Xinqiao Ding Yaogen (Institute of Electronics, Chinese Academy of Sciences, Beijing 100080) 2003Journal of Electronics(China)2003,20,1:3
2An Evaluation of Heat Dissipation Capability of Slow-Wave Structures显示文摘Han Yong Liu Yanwen Ding Yaogen 2007IEEE Trans on ED2007,54,:1
3An Evaluation ofHeatDissipation Capability of the Slow-Wave Structures显示文摘Han Yong Liu Yanwen Ding Yaogen 2007IEEETransactions on Electron Devices2007,54,6:1
4Improve ment of Heat Dissipation Capability of Slow-Wave Struc ture Using Two Assembling Methods 显示文摘Han Yong Liu Yanwen Ding Yaogen 2008IEEE Elec tron Device Letters2008,29,8:1
5Linear analysis of a rectangular waveguide cyclotron maser with a sheet electron beam显示文摘Zhao Ding Ding Yaogen Wang Yong 2010Physics of Plasmas2010,17,11:1
6Research progress on X-band multi-beam klystron显示文摘Ding Yaogen Shen Bin Cao Jing 2009IEEE Trans on Electron Devices2009,56,5:1
7Thermal Analy-sis of aHelix TWT Slow-Wave Structure显示文摘Han Yong Liu Yanwen Ding Yaogen 2008IEEE Transac-tions on Electron Devices2008,55,5:1
8Thermal Analysis of a Helix TWT Slow Wave Structure 显示文摘Han Yong Liu Yanwen Ding Yaogen 2008IEEE Transactions on Electron Devices2008,55,5:1
9Reliability Analysis of Thermal Conduction of Slow-Wave Structures Assembled with Different Methods 显示文摘Han Yong Liu Yanwen Ding Yaogen 2009IEEE Transac- tions on Electron Devices2009,9,2:1
10Improvement ofHeat Dissipation Capability of Slow-Wave Structure UsingTwo Assembling Methods显示文摘Han Yong Liu Yanwen Ding Yaogen 2008IEEE Electron Device Letters2008,29,8:1
11Research progress on X- band multi-beam klystron显示文摘Yaogen Ding Bin Shen Jing Cao 2009IEEE Transaction on Electron Devices2009,56,5:1
12Research Progress on X-Band Multibeam Klystron显示文摘Ding Yaogen Shen Bin Cao Jing 2009IEEE Trans on Electron Devices2009,56,5:1
13Research progress on X-band multi-beam klystron显示文摘Ding Yaogen Shen Bin Cao Jing 2009IEEE Trans on Electron Devices2009,6,5:1
14An Evaluation of Heat Dissipation Capability of Slow-Wave Structures显示文摘Han Yong Liu Yanwen Ding Yaogen 2007IEEE Trans on ED2007,54,6:1
15S band multibeam klystron with bandwidth of 10%显示文摘Yaogen Ding 2005IEEE Trans on ED2005,52,5:1
16Research Progress on X-Band Multi-Beam Klystron显示文摘Ding Yaogen Shen Bin Cao Jing 2009IEEE Trans on Electron Devices2009,56,5:1
17Development of an S-band Klystron with Bandwidth of More than 11%显示文摘Wang Yong Ding Yaogen Liu Pukun IEEE Trans on Plasma Science0,34,:1
18DEVELOPMENT OF 50MW S-BAND KLYSTRON显示文摘This letter reports the development of a 50MW S-band klystron in the Institute of Electronics, Chinese Academy of Sciences (IECAS). It adopted a structure of six-cavity and single output window. Under conditions of an RF (Radio Frequency) pulse width of 4μs, a beam voltage of 305.9kV and a beam current of 368A, the peak output power has achieved 51.4MW with an efficiency of 45.6% and a gain of 54dB.Wang Yong Xie Jingxin Ding Yaogen Liu Pukun 2006Journal of Electronics(China)2006,23,3:1
19RECENT PROGRESS IN MULTI-BEAM KLYSTRON IN IECAS显示文摘Recent research progresses in Multi-Beam Klystron (MBK) in IECAS are briefly introduced in the letter. The S-band MBKs of IECAS have peak power of 120-250 kW, average power of 4-9 kW, efficiency of 35-45%, gain of 41-46 dB, beam voltage of 15-19 kV, and weight of 40-45 kg. Some key technical problems of MBK are also described and discussed. Among them,improving the design of MBK to obtain the required bandwidth, raising beam transmission to increase average power, eliminating oscillation and spray spectrum, overcoming window breakdown caused by magic mode, reducing breakdown times of electrongun, are most important things for the practical MBK. Besides, further research work in MBK in IECAS is commented.Ding Yaogen (Institute of Electronics, Chinese Academy of Sciences, Beijing 100080) 2002Journal of Electronics(China)2002,19,4:0
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