multipactor

网络  次级电子倍增; 倍增效应; 电子二次倍增效应; 微放电; 次级电子倍增效应

电力



双语例句

  1. The Micro-Pulse Electron Gun ( MPG) is a new type of microwave electron gun that is based on the multipactor discharge.
    微脉冲电子枪是一种利用次级电子倍增效应产生强流电子束的微波电子枪。
  2. Secondary electron multipactor limiter
    次级电子倍增限幅器
  3. Some factors that affect multipactor's threshold are analyzed.
    分析了影响微放电效应阈值电平的几种因素。
  4. BEIJING EFFECT On Rhetorical Effect Multipactor on Microwave Components
    微波部件微放电效应综述
  5. Multipactor process between metal plates was analyzed.
    着重分析了平行金属平板电极之间微放电效应发生过程。
  6. A simple circuit model is constructed to analyze the interaction between multipactor discharge and RF circuit.
    建立一个简单的电路模型,分析二次电子倍增放电与RF腔之间的相互作用。
  7. In the design and implementation of microwave components for satellite applications, passive intermodulation and multipactor discharge continue to be recurring problems for high power microwave equipments.
    在星载微波器件的设计和使用过程中,产生于大功率条件下微波器件中的无源互调和二次电子倍增放电始终是一对容易发作的问题。
  8. The mechanism of the low-pressure discharge and multipactor in satellite-borne microwave equipment, and comparison between two discharge tests were described in this paper.
    介绍了星载微波设备低气压放电和微放电的机理,以及两种放电试验的异同点。
  9. The experience showed that the mechanism and environment of the low-pressure discharge and multipactor were different, and two tests had no interchange.
    实践表明,低气压放电、微放电的机理和环境条件各异,两种试验不具互换性。
  10. Solution of Steady State Multipactor Discharge Based on Fourier Series
    基于傅立叶级数法的稳态二次电子倍增放电求解
  11. In order to deepen the understanding of these two special phenomena, the generation of passive intermodulation and multipactor discharge in microwave components for satellite applications is explored, and the suppression methods are also presented.
    为了加深对这两种特殊现象的理解,文章探讨了星载微波器件的无源互调和二次电子倍增放电的产生原因,并给出了抑制措施。
  12. The Prevention of Low-Pressure Discharge and Multipactor for Power Combiner on FY-2 Meteorological Satellite
    FY-2卫星功率合成器低气压放电和微放电预防
  13. The multipactor thresholds of rectangular wave-guide and square coaxial line were predicted and compared.
    对空间微波重要部件矩形波导和方同轴线的微放电效应阈值进行了预测计算和对比。
  14. The reasons of multipactor and low-pressure discharge of satellite-borne large power passive device were described in this paper.
    阐述了星载无源大功率部件发生微放电和低气压放电的原因。
  15. Analysis for Multipactor on Microwave Components
    微波部件微放电特性分析
  16. Study of Predication of Multipactor Investigation of a Micro-Packed Column with High Efficiency
    微放电效应预测研究高效微填充柱性能考察
  17. Multipactor in microwave system in space
    空间微波系统中微放电现象
  18. This paper provides the corresponding theoretical preparations for further research on the multipactor.
    本文为微放电进一步的研究提供了相应的理论准备。
  19. It is impracticable to simulate the multipactor effect and predict the space charge force by use of large number of electrons.
    在微放电现象的仿真中,用大量的电子去正确预测空间电荷力的做法是不可行的,所以实现较为精确的仿真还需要采用无空间电荷的粒子仿真。
  20. Multipactor is a vacuum discharge resonance phenomenon, usually occuring in the space microwave systems.
    微放电效应是一种真空谐振放电现象,通常它在航天微波系统中发生。
  21. With the rapid development of the space electronic technology and the upswing of operating frequency, the possibility of multipactor discharge in microwave components is increasing.
    随着航天电子技术的飞速发展,工作功率越来越高,使得微波部件产生微放电的可能性大大增加。