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Nonlinear time-series analysis of current signal in cathodic contact glow discharge electrolysis

机译:阴极接触辉光放电电解中电流信号的非线性时间序列分析

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摘要

In the standard two-electrode configuration employed in electrolytic process, when the control dc voltage is brought to a critical value, the system undergoes a transition from conventional electrolysis to contact glow discharge electrolysis (CGDE), which has also been referred to as liquid-submerged micro-plasma, glow discharge plasma electrolysis, electrode effect, electrolytic plasma, etc. The light-emitting process is associated with the development of an irregular and erratic current time-series which has been arbitrarily labelled as "random," and thus dissuaded further research in this direction. Here, we examine the current time-series signals measured in cathodic CGDE configuration in a concentrated KOH solution at different dc bias voltages greater than the critical voltage. We show that the signals are, in fact, not random according to the NIST SP. 800-22 test suite definition. We also demonstrate that post-processing low-pass filtered sequences requires less time than the native as-measured sequences, suggesting a superposition of low frequency chaotic fluctuations and high frequency behaviors (which may be produced by more than one possible source of entropy). Using an array of nonlinear time-series analyses for dynamical systems, i.e., the computation of largest Lyapunov exponents and correlation dimensions, and re-construction of phase portraits, we found that low-pass filtered datasets undergo a transition from quasi-periodic to chaotic to quasi-hyper-chaotic behavior, and back again to chaos when the voltage controlling-parameter is increased. The high frequency part of the signals is discussed in terms of highly nonlinear turbulent motion developed around the working electrode.
机译:在电解过程中使用的标准双电极配置中,当控制直流电压达到临界值时,系统会经历从常规电解到接触辉光放电电解(CGDE)的转变,CGDE也被称为液体-浸没的微等离子体,辉光放电等离子体电解,电极效应,电解等离子体等。发光过程与不规则且不稳定的电流时间序列的发展有关,该时间序列被任意标记为“随机”,因此被劝阻朝这个方向进一步研究。在这里,我们检查了在浓缩的KOH解决方案中,在大于临界电压的不同dc偏置电压下,以阴极CGDE配置测量的当前时间序列信号。我们证明,根据NIST SP,信号实际上并不是随机的。 800-22测试套件定义。我们还证明,后处理的低通滤波后的序列比原始的被测序列需要的时间更少,这表明低频混沌波动和高频行为(可能由多个熵源产生)的叠加。使用动力学系统的一系列非线性时间序列分析,即最大Lyapunov指数和相关维的计算,以及相像的重构,我们发现低通滤波的数据集经历了从准周期到混沌的过渡到准超混沌行为,当电压控制参数增加时又回到混乱状态。信号的高频部分是根据工作电极周围发生的高度非线性湍流运动进行讨论的。

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  • 来源
    《Journal of Applied Physics》 |2016年第20期|203303.1-203303.7|共7页
  • 作者单位

    Department of Sustainable and Renewable Energy Engineering, University of Sharjah, PO Box 27272, Sharjah, United Arab Emirates;

    Institut de Recherche en Communications et Cybernetique de Nantes, Ecole Centrale de Nantes, 44300 Nantes, France;

    Department of Electrical and Computer Engineering, University of Sharjah, PO Box 27272, Sharjah, United Arab Emirates;

    Department of Electrical and Computer Engineering, University of Sharjah, PO Box 27272, Sharjah, United Arab Emirates;

    Department of Sustainable and Renewable Energy Engineering, University of Sharjah, PO Box 27272, Sharjah, United Arab Emirates;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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