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Developing an optimization algorithm for diagnostic modeling of optical emission spectroscopic measurement of non-equilibrium plasmas based on the argon collisional-radiative model

机译:基于氩气辐射辐射模型开发用于基于氩气辐射模型的非平衡等离子体光发射光谱测量诊断算法的优化算法

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摘要

In this work, an optimization algorithm was proposed for plasma diagnostic modeling based on a statistical analysis of reduced population density distribution. The algorithm generates a diagnostic equation, whose input parameters are the radiant flux of the multi-optical emission lines, and output parameters are electron temperature T-e, electron density N-e, and electron energy distribution function (EEDF), based on the dependence of reduced population density onT(e), N-e, and EEDF. The argon collisional-radiative model and the generalized EEDF were applied for the analysis of the excitation-kinetics. In this study, the diagnostic error for the low-pressure inductively coupled plasma, the low-pressure microwave discharge surface wave plasma, and the atmospheric dielectric barrier discharge plasma were simulated. The simulated diagnostic errors were smaller than those of the previously reported model.
机译:在这项工作中,提出了一种基于降低人口密度分布的统计分析的血浆诊断建模的优化算法。 该算法产生诊断方程,其输入参数是多光发射线的辐射通量,并且基于群体减少的依赖性,输出参数是电子温度TE,电子密度Ne和电子能量分布函数(EEDF) 密度ONT(e),NE和EEDF。 氩气局部辐射模型和广义EEDF用于分析激发动力学。 在该研究中,模拟了低压电感耦合等离子体,低压微波放电表面波等离子体和大气介电阻挡放电等离子体的诊断误差。 模拟诊断误差小于先前报告的模型的诊断误差。

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