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Modeling and impedance matching for radio frequency driven plasma lamp considering cold and hot states

机译:考虑寒冷和炎热状态的射频驱动等离子体灯的建模与阻抗匹配

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摘要

A new dual-state impedance matching scheme for a microwave driven plasma lamp using a solid-state power amplifier (SSPA) is presented. The impedance of the plasma lamp depends on the amount of input radio frequency (RF) energy, and therefore has very different values for hot and cold states. First, a method for effectively modeling the electrical characteristics of a plasma lamp that depends on RF power has been proposed. Second, a new technique has been proposed to achieve dual-state impedance matching for two state impedances at two very close frequencies using a T-shaped matching network with two section shunt stub and additional transmission line. The proposed method can achieve dual state impedance matching in two frequency bands located very closely when compared to the conventional methods. The accuracy of the proposed model and the effectiveness of the proposed dual-state matching are verified via a plasma lamp system with a 2.45 GHz 300 W GaN SSPA.
机译:提出了一种使用固态功率放大器(SSPA)的微波驱动等离子体灯的新的双状态阻抗匹配方案。等离子体灯的阻抗取决于输入射频(RF)能量的量,因此对热和寒冷的状态具有非常不同的值。首先,已经提出了一种用于有效建模取决于RF功率的等离子体灯的电特性的方法。其次,已经提出了一种新的技术,以实现两个非常紧密的两个状态阻抗的双状态阻抗匹配,使用T形匹配网络具有两个截面分流支柱和附加传输线。该方法可以在与传统方法相比时在两个频带中实现双状态阻抗匹配。通过具有2.45GHz 300 W GaN SSPA的等离子灯系统验证所提出的模型的准确性和所提出的双状态匹配的有效性。

著录项

  • 作者

    Wonshil Kang; Hyunchul Ku;

  • 作者单位
  • 年度 2018
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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