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Nonlinear circuit analysis of harmonic currents in a floating Langmuir probe with a capacitive load

机译:具有电容负载的浮动曲调探针中谐波电流的非线性电路分析

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Plasma diagnostics using the floating harmonic technique were first used to obtain the electron temperature in a tokamak plasma. In this technique, the electron temperature depends on the ratio of the harmonic currents in a resistive sheath. Because these harmonic currents are determined by a modulated sheath voltage, calculation of the exact modulated voltage across the sheath is important; in general, the voltage is calculated using a phase of the first harmonic current. However, when a series load capacitance is present, the second harmonic currents are abnormally reduced compared to those expected by the conventional floating harmonic model, resulting in an unreliable measurement of the electron temperature. To describe this phenomenon, we used a modified floating harmonic model by applying the harmonic balance technique, a method that analyzes nonlinear circuits. Theoretical prediction of the harmonic current obtained from the modified model was compared with the experimental results, and they are in good agreement. In addition, the degrees of sheath nonlinearity, defined as the ratio of the second harmonic current (or voltage) to the fundamental current (or voltage), are discussed.
机译:使用浮动谐波技术的等离子体诊断首先用于获得Tokamak等离子体中的电子温度。在该技术中,电子温度取决于电阻护套中的谐波电流的比率。因为这些谐波电流由调制的护套电压确定,所以鞘膜上的精确调制电压的计算很重要;通常,使用第一谐波电流的相位计算电压。然而,当存在串联负载电容时,与传统浮动谐波模型的预期相比,第二谐波电流异常降低,导致电子温度的不可靠测量。为了描述这种现象,我们通过应用谐波平衡技术来使用改进的浮动谐波模型,这是一种分析非线性电路的方法。将从改性模型获得的谐波电流的理论预测与实验结果进行了比较,它们非常一致。另外,讨论了鞘非线性的程度,定义为二次谐波电流(或电压)与基本电流(或电压)的比率。

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