Analysis of a DC converter working on a plasma arc

E. M. Vereshchago, V. Kostiuchenko, S. Novogretskyi
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Abstract

Introduction. The article is devoted to the analysis of a stabilized direct current converter operating on a plasma arc. Electroplasma technologies of the new generation cause the need to design workable systems that provide control of technological processes and their dynamic optimization in real time. The improvement of any electroplasma technology begins with the improvement of the operating parameters of the main element of plasma installations - the power source. Goal is to build and study a continuous model of a pulsed source of secondary power supply, which works on an electric welding and plasma arc. Methodology. In the work, a mathematical description of the converter was performed. The continuous model of the system is substantiated, taking into account its features, namely, the load (gas-discharge gap) is a source of voltage and dynamic resistance. The parameters of the constant part during circuit synthesis are determined: the components of the gain of the constant part, the relative signal coefficient of the current sensor and the PWM gain. Studies of the open system «power source - arc» have been carried out. Results. MATLAB objects were created - continuous mathematical models of the object in the form of transfer functions. The obtained transient characteristics for different options: «arc current - control signal» and « inductor current - control signal» showed that open systems are unstable. It was found that in the case of instability, the filling frequency of self-oscillations occurring in the linear mode is close to the frequency of natural oscillations of the circuit. The dependence of the module and the argument of the input resistance of the power part of the pulsed power supply with parallel capacitance to the electric arc and without it, which have matching frequency characteristics, is established. The circuit considered with the initial data adopted in this article has a frequency transfer coefficient of the same type as the first-order non-minimum-phase (phase-shifting) link. Frequency response graphs for the output impedance of the power unit show that this power unit is a broadband frequency-selective system with a bandwidth of B0.707 = 100 kHz. Originality. Expressions for the frequency transfer function, input and output resistance of the pulse voltage converter operating on an arc load were obtained by the method of averaging and linearization. The frequency amplitude and phase characteristics for the pulse voltage converter with an LC filter and the output according to the arc current and the choke current were studied. The transfer functions of the continuous model in terms of arc current and choke current at the specified parameters are the same, which must be taken into account when designing regulators. Practical significance. The frequency characteristics of the input and output resistances and transfer functions can be used when forming a technical task for designing a power source to assess the stability of the «pulse converter - arc» system and rational calculation of input filters.
工作在等离子弧上的直流变换器的分析
介绍。本文对一种在等离子弧上工作的稳定直流变换器进行了分析。新一代的电等离子体技术需要设计可行的系统,以提供对工艺过程的实时控制及其动态优化。任何电等离子体技术的改进都始于等离子体装置主要元件——电源的工作参数的改进。目的是建立和研究工作在电焊和等离子弧上的脉冲二次电源的连续模型。方法。在工作中,对变换器进行了数学描述。考虑到负载(气体放电间隙)是电压和动态电阻的来源这一特点,建立了系统的连续模型。确定了电路合成过程中恒定部分的参数:恒定部分的增益组成、电流传感器的相对信号系数和PWM增益。对开放系统“电源-电弧”进行了研究。结果。用MATLAB创建对象——以传递函数的形式建立对象的连续数学模型。得到了“电弧电流控制信号”和“电感电流控制信号”两种不同选择的暂态特性,表明开放系统是不稳定的。研究发现,在不稳定情况下,线性模式下自振荡的填充频率与电路的自然振荡频率接近。建立了具有匹配频率特性的并联电容和无并联电容的脉冲电源功率部分的模块和输入电阻参数与电弧的依赖关系。本文采用初始数据考虑的电路与一阶非最小相位(移相)链路具有相同类型的频率传递系数。功率单元输出阻抗的频响图表明,该功率单元是宽带选频系统,带宽为B0.707 = 100 kHz。创意。采用平均和线性化的方法,得到了工作在电弧负载上的脉冲电压变换器的频率传递函数和输入、输出电阻的表达式。研究了带LC滤波器的脉冲电压变换器的频率、幅值和相位特性,以及根据电弧电流和扼流圈电流的输出。在给定参数下,连续模型的弧电流和扼流圈电流的传递函数是相同的,在设计稳压器时必须考虑到这一点。现实意义。输入、输出电阻的频率特性和传递函数可用于形成电源设计的技术任务,以评估“脉冲变换器-电弧”系统的稳定性和合理计算输入滤波器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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