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Automatic measuring and processing system of audio sensing for real-time arc height control of pulsed GTAW

机译:实时检测脉冲GTAW弧高的音频传感自动测量和处理系统

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Purpose – Surface forming control of welding bead is the fundamental study in automated welding. Considering that the vision sensing system cannot extract the height information of weld pool in pulsed GTAW process, so this paper designed a set of automatic measurement and control technology to achieve real-time arc height control via audio sensing system. The paper aims to discuss these issues. Design/methodology/approach – The experiment system is based on GTAW welding with acoustic sensor and signal conditioner. A combination denoising method was used to reduce the environmental noise and pulse interference noise. After extracting features of acoustic signal, the relationship between arc height and arc sound pressure was established by linear fitting. Then in order to improve the prediction accuracy of that model, the piecewise linear fitting method was proposed. Finally, arc height linear model of arc sound signal and arc height is divided into two parts and built in two different arc height conditions, which are arc height 3-4 and 4-5-6 mm. Findings – The combination denoising method was proved to have great effect on reducing the environmental noise and pulse interference noise. The experimental results showed that the prediction accuracy of linear model was not stable in different arc height changing state, like 3-4 and 4-5-6 mm. The maximum error was 0.635588 mm. And the average error of linear model was about 0.580487 mm, and the arc sound signal was accurately enough to meet the requirement for real-time control of arc height in pulse GTAW. Originality/value – This paper tries to make a foundation work to achieve controlling of depth of welding pool through arc sound signal, then the welding quality control. So a new idea of arc height control based on automatic measuring and processing system through arc sound signal was proposed. A new way to remove environmental noise and pulse interference noise was proposed. The results of this thesis had proved that arc sound signal was an effective features and precisely enough for online arc height monitoring during pulsed GTAW.
机译:目的–焊缝的表面成形控制是自动焊接的基础研究。考虑到视觉传感系统无法在脉冲GTAW过程中提取焊缝高度信息,因此设计了一套自动测控技术,通过音频传感系统实现了电弧高度的实时控制。本文旨在讨论这些问题。设计/方法/方法–实验系统基于GTAW焊接,带有声学传感器和信号调节器。使用组合降噪方法来减少环境噪声和脉冲干扰噪声。提取声信号特征后,通过线性拟合建立了电弧高度与电弧声压的关系。为了提高模型的预测精度,提出了分段线性拟合的方法。最后,将电弧声音信号和电弧高度的电弧高度线性模型分为两部分,并建立在两个不同的电弧高度条件下,即电弧高度3-4和4-5-6 mm。发现–组合降噪方法被证明对减少环境噪声和脉冲干扰噪声有很大的作用。实验结果表明,线性模型的预测精度在不同的弧高变化状态下(如3-4 mm和4-5-6 mm)不稳定。最大误差为0.635588 mm。线性模型的平均误差约为0.580487 mm,电弧声信号准确度足以满足脉冲GTAW中实时控制电弧高度的要求。创意/价值–本文试图通过电弧声信号来实现对焊池深度的控制,然后进行焊接质量控制的基础工作。因此提出了一种基于电弧声信号的自动测量与处理系统的电弧高度控制的新思路。提出了一种消除环境噪声和脉冲干扰噪声的新方法。论文的结果证明,电弧声信号是一种有效的特征,对于脉冲式GTAW期间的在线电弧高度监测来说,它足够精确。

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