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DESIGN IMPROVEMENTS FOR MODE AND POLARIZATION CONVERTERS FOR 60 GHZ GYROTRONS.

机译:60 GHZ陀螺仪的模式和极化转换器的设计改进。

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摘要

Gyrotrons currently in use typically have circular-waveguide microwave outputs in the TE(,01) or TE(,02) modes which are not efficient for plasma heating. Periodic perturbation type mode converters have been successfully used to convert these outputs to a TE(,11) or HE(,11) mode which have more efficient plasma heating characteristics. Methods are discussed by which the efficiency and power handling capability of those mode converters can be increased while their length is simultaneously reduced. The mode converter's bandwidth is also usually increased. These improvements are accomplished by (1) changing the perturbation period slightly from the beat wavelength between the input and the desired output mode to account for the effect of the presence of unwanted modes, (2) inserting sections of straight waveguide to adjust the relative phases of the important modes so that coupling to unwanted modes is minimized, (3) varying the amplitude of the perturbation from period to period to maximize the converter efficiency, and (4) choosing the profile of the perturbation period to further reduce the coupling to unwanted modes.;The theory and design for a polarization converter which transforms a linearly polarized (stationary) TE(,11) mode to a circularly polarized (rotating) TE(,11) mode is also presented. The design consists of an elliptical section of waveguide between two smoothly varying tapered sections.;A mode converter system which can produce any output "polarization" of a TE(,11) or HE(,11) mode from linear to left- or right-hand polarized using the polarization converter is also discussed.;Generally the output power of a gyrotron is not purely in a single mode but may contain a few percent of its output power in other modes. If the first mode converter following the gyrotron has been optimized for a single input, the presence of other modes will normally decrease the converter's efficiency. In some cases, the efficiency can be increased to single mode levels by adjusting the relative phase between the input modes and adjusting the lengths of the flat-section inserts. In other cases, it is more effective to insert a short single-cycle converter near the gyrotron output to convert its unwanted mode components to the nominal output mode.
机译:当前使用的回旋加速器通常具有TE(,01)或TE(,02)模式的圆波导微波输出,对于等离子体加热效率不高。周期摄动型模式转换器已成功用于将这些输出转换为具有更有效的等离子体加热特性的TE(,11)或HE(,11)模式。讨论了可以提高这些模式转换器的效率和功率处理能力,同时减小其长度的方法。模式转换器的带宽通常也会增加。这些改进是通过(1)从输入模式和所需输出模式之间的拍频波长稍微改变摄动周期来解决存在不想要模式的影响,(2)插入直波导段以调整相对相位重要的模式,以便最小化与有害模式的耦合;(3)逐周期改变扰动的幅度以最大化转换器效率;(4)选择扰动周期的曲线以进一步减少与有害模式的耦合还介绍了一种将线性偏振(固定)TE(,11)模式转换为圆偏振(旋转)TE(,11)模式的偏振转换器的理论和设计。该设计包括两个平滑变化的锥形部分之间的波导的椭圆部分。模式转换器系统可以产生从线性到左或右的TE(,11)或HE(,11)模式的任何输出“偏振”通常还讨论了使用极化转换器极化的手。回旋管的输出功率不仅仅在单一模式下,而是在其他模式下可能包含其输出功率的百分之几。如果回旋加速器后的第一个模式转换器已针对单个输入进行了优化,则其他模式的存在通常会降低转换器的效率。在某些情况下,可以通过调整输入模式之间的相对相位并调整扁平插入物的长度,将效率提高到单模式水平。在其他情况下,在回旋管输出附近插入一个短的单周期转换器以将其不需要的模式分量转换为标称输出模式更为有效。

著录项

  • 作者

    RHEE, UN DONG.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1986
  • 页码 147 p.
  • 总页数 147
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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