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Investigation of optimal control system for arc spraying

机译:电弧喷涂最优控制系统的研究

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摘要

Arc-voltage feedback PID (Proportional plus Integral plus Differential) controller and arc-current feedback PID controller are designed with an algorithm of discrete PID. In order to realize parameters optimization and adaptation of the arc-spraying process and to reduce blindness in selecting process parameters, a serial communication interface between PC and MCU (Micro Control Unit) is designed so that on-line modification of the PID control parameters is implemented. A genetic algorithm is adopted to optimize PID control parameters. Meanwhile, the error between the actual value and the setting value of spraying current is selected as the judgment criterion to determine the adaptability for the algorithm. The best optimal population of PID control parameters can be obtained, so that the optimal controlling in arc-spraying process is realized and an excellent coating of arc-spraying is obtained.
机译:弧压反馈PID(比例加积分加微分)控制器和弧电流反馈PID控制器采用离散PID算法设计。为了实现电弧喷涂工艺的参数优化和适应,并减少工艺参数选择的盲目性,设计了PC和MCU(微控制单元)之间的串行通讯接口,以便在线修改PID控制参数。已实施。采用遗传算法优化PID控制参数。同时,以实际值与喷涂电流设定值之间的误差作为判断标准,确定算法的适应性。可以获得最佳的PID控制参数的最佳填充,从而实现电弧喷涂过程中的最佳控制,并获得优异的电弧喷涂涂层。

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