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Control Study of Pulsed MIG High-Speed Welding Power Source Based on Single Neuron Adaptive PID Model

机译:基于单神经元自适应PID模型的脉冲MIG高速焊接电源控制研究

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In this paper, the control optimization of the single neuron adaptive PID controller to the output current of the welding power source is studied in the pulsed MIG high-speed welding test of 304 stainless steel sheet. The simulation results show that the suppression effect of single neuron adaptive PID control on Gauss noise interference is better than that of classical PID control in suppressing Gauss noise interference. The experimental results show that the single neuron adaptive PID control pulse current has little strength in the peak and base value superposition peak pulse number. From the appearance, the high-speed weld seam has no splash, straight, uniform, beautiful and so on, and the welding quality is obviously improved.
机译:本文在304不锈钢薄板脉冲MIG高速焊接试验中,研究了单神经元自适应PID控制器对焊接电源输出电流的控制优化。仿真结果表明,在抑制高斯噪声干扰方面,单神经元自适应PID控制对高斯噪声干扰的抑制效果优于传统的PID控制。实验结果表明,单神经元自适应PID控制脉冲电流在峰值和基值叠加峰值脉冲数上的强度较小。从外观上看,高速焊缝无飞溅,笔直,均匀,美观等优点,焊接质量明显提高。

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