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Artificial Neural Network Motor Control for Full-Electric Injection Moulding Machine

机译:全电气注塑机的人工神经网络电机控制

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This paper proposes a new artificial neural network-based position controller for a full-electric injection moulding machine. Such a controller improves the dynamic characteristics of the positioning for hot runners, pin valve and the injection motors for varying moulding parameters. Practical experimental data and Matlab's System Identification Toolbox have been used to identify the transfer functions of the motors. The structure of the artificial neural network, which used positioning error and speed of error, was obtained by numerical modelling in Matlab/Simulink. The artificial neural network was trained using back-propagation algorithms to provide control of the motor current thus ensuring the required position and velocity. The efficiency of the proposed ANN-based controller has been estimated and verified in Simulink using real velocity data and the position of the injection moulding machine and pin valve motors.
机译:本文提出了一种用于全电动注塑机的新型人工神经网络的位置控制器。这种控制器改善了热流道,针阀和喷射电机的定位的动态特性,用于改变模塑参数。实用的实验数据和MATLAB的系统识别工具箱已被用于识别电机的传递功能。通过Matlab / Simulink中的数值建模获得了使用定位误差和误差速度的人工神经网络的结构。使用反向传播算法训练人工神经网络,以提供电动机电流的控制,从而确保所需的位置和速度。使用实际速度数据和注塑机和销阀电机的位置,在Simulink中估计并验证了所提出的基于ANN的控制器的效率。

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