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Correction factor based double model fuzzy logic control strategy of arc voltage in pulsed MIG welding

机译:基于校正因子的脉冲MIG焊电弧电压双模型模糊逻辑控制策略

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摘要

According to the feature of arc voltage control in welding steel using pulsed MIG welding, a correction factor based double model fuzzy logic controller (FLC) was developed to realize the arc voltage control by means of arc voltage feedback. When the error of peak arc voltage was great, a coarse adjusting fuzzy logic control rules with correction factor was designed, in the controller, the peak arc voltage was controlled by the wire feeding speed by means of arc voltage feedback. When the error of peak arc voltage was small, a fine adjusting fuzzy logic control rules with correction factor was designed, in this controller, the peak arc voltage was controlled by the background time by means of arc voltage feedback. The FLC was realized in a Look-Up Table (LUT) method. Experiments had been carried out aiming at implementing the control strategy to control the arc length change in welding process. Experimental results show that the controller proposed enables the consistency of arc length and the stability of arc voltage and welding process to be achieved in pulsed MIG welding process.
机译:针对脉冲MIG焊焊接钢中电弧电压控制的特点,开发了基于校正因子的双模型模糊逻辑控制器(FLC),通过电弧电压反馈实现电弧电压控制。当峰值电弧电压误差较大时,设计了具有校正因子的粗调模糊逻辑控制规则,在控制器中,通过电弧电压反馈,通过送丝速度控制了峰值电弧电压。当峰值电弧电压误差较小时,设计了具有修正因子的微调模糊逻辑控制规则,在该控制器中,峰值电弧电压由背景时间通过电弧电压反馈进行控制。 FLC是通过查找表(LUT)方法实现的。已经进行了旨在实现控制策略以控制焊接过程中电弧长度变化的实验。实验结果表明,所提出的控制器能够在脉冲MIG焊接过程中实现电弧长度的一致性以及电弧电压和焊接过程的稳定性。

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