On the Solution of the Problem of Synthesis of the Control System for the Process of Dosed Feed of Electrode Wire for Arc Welding Equipment

V. Lebedev
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Abstract

Goal. Refinement of the methodology for the development of an effective control system for an electric drive with controlled relay-type regulators for organizing a metered feed of an electrode wire using the parameters of the arc process with the possibility of using it in design practice and practice of technological application. Methodology. The proposed method for the mathematical description (mathematical model) of the system of the developed structure electric drive - arc process with current feedback of welding with a variable structure device is based on the theory of automatic control as applied to nonlinear elements, the application of the theory of operational calculus. At the same time, a selection and description of a nonlinear node in the feedback circuit in the form of a relay element with a certain structure and subsequent linearization of this element was made. As an electric motor of the electrode wire feeder, a new development of a specialized valve electric motor is used, which is used in the system with a microprocessor controller. Results. Due to the presence of a substantially nonlinear link, the calculation of the valve electric drive system – the arc process can be found on the basis of a system of nonlinear differential equations, which is practically impossible for practical application. In this work, these complications are overcome on the basis of a rational choice of the description of the nonlinear link, its harmonic linearization and obtaining on this basis a mathematical description of the system, from which, using the methodology of operational calculus, the relations necessary for calculating the parameters of the system are determined in analytical form. Originality. The problem of calculating a rather complex problem of mathematical description of the valve electric drive system – a technological link in the form of an arc process with a substantially nonlinear link in the feedback circuit in the work is solved with the effective use of a set of methodological methods, which include as a means of representing individual links, including nonlinear links selected simplifications and solutions of the obtained differential equations using original methods of operational calculus. The proposed method (mathematical model) is tested in two directions – oscillography of a real system, as well as system simulation. Practical significance. Using the developed methods for describing the control system, it is possible to calculate its characteristics and, on their basis, select the parameters for setting the electric drive controller, which allows, without additional experimental research, to obtain the necessary character of the transfer of electrode metal, and, consequently, the quality of the result of the arc process.

弧焊设备焊丝加药过程控制系统综合问题的解决
的目标。改进了开发一种有效的控制系统的方法,该系统用于控制继电器式调节器的电力驱动,用于利用电弧过程的参数组织电极丝的计量进给,并可能在设计实践和技术应用实践中使用它。方法。提出了一种基于非线性元件自动控制理论的变结构装置电驱动电弧电流反馈过程系统的数学描述(数学模型)方法。同时,以具有一定结构的继电器元件的形式对反馈电路中的非线性节点进行选择和描述,并对该元件进行后续线性化处理。作为电极送丝机的电动机,采用了一种新研制的专用阀式电动机,该电动机用于微处理器控制器的系统中。结果。由于存在实质上的非线性环节,阀门电动驱动系统-电弧过程的计算可以建立在一个非线性微分方程组的基础上,这在实际应用中实际上是不可能的。在这项工作中,这些复杂的问题是在合理选择非线性环节的描述及其谐波线性化的基础上克服的,并在此基础上获得系统的数学描述,从中,使用运算演算的方法,计算系统参数所需的关系以解析形式确定。创意。计算问题是一个相当复杂的问题的数学描述的阀门电动驱动系统-一个技术环节的形式在一个弧过程与本质上非线性的环节在反馈电路的工作是解决有效地利用一套方法学的方法,其中包括作为代表单个环节的手段,包括非线性环节选择的简化和解得到的微分方程使用原始方法的微积分。该方法(数学模型)在实际系统的示波器和系统仿真两个方面进行了验证。现实意义。利用所开发的描述控制系统的方法,可以计算其特性,并在其基础上选择参数以设置电驱动控制器,这使得无需额外的实验研究,即可获得电极金属转移的必要特性,从而获得电弧过程结果的质量。
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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