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Measuring System for Time-Variant Impedances

机译:时变阻抗测量系统

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This paper describes a measuring system developed to investigate time-variant impedances. The initial points for the development of the measuring system were investigations on coaxial lambda /4-resonators. At a frequency close to the fundamental resonant frequency of the resonator, plasma can be generated at the tip of the inner conductor, operating the coaxial resonator on a high power level. First investigations had shown a significant change of the resonator input impedance at the feeding point during the process of plasma generation. To optimize the geometry of the resonator with regard to power consumption, time-, frequency- and power- dependent network models of the resonator including the plasma effects were to be found. In the following, a low-cost measuring system is described that facilitates accurate measurements of complex, time-variant input impedances in a defined frequency and power range. The measurement principle-like in commercially available network analyzers-is the determination of the magnitude and phase of the reflection coefficient with the subsequent calculation of the input impedance. To determine the time-variant behavior of the reflection coefficient, a modified detector circuitry is used. The measurement setup consists mainly of a directional coupler, a combined magnitude and phase detector, and an oscilloscope for sampling. Due to the application, the setup requires high-frequency and high-power supply.
机译:本文介绍了一种用于研究时变阻抗的测量系统。测量系统开发的最初要点是同轴λ/ 4谐振器的研究。在接近谐振器基本谐振频率的频率下,可在内部导体的尖端产生等离子体,从而使同轴谐振器在高功率水平下工作。最初的研究表明,在等离子体产生过程中,谐振器输入阻抗在馈电点处发生了显着变化。为了优化谐振器在功耗方面的几何形状,将找到包括等离子体效应的谐振器的时间,频率和功率相关网络模型。在下文中,描述了一种低成本的测量系统,该系统有助于在定义的频率和功率范围内精确测量复杂的时变输入阻抗。像在商用网络分析仪中一样,测量原理是确定反射系数的大小和相位,然后计算输入阻抗。为了确定反射系数的时变特性,使用了改进的检测器电路。测量设置主要包括定向耦合器,幅度和相位组合检测器以及用于采样的示波器。由于应用的原因,该设置需要高频和大功率电源。

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