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Adaptive control of the filling velocity of thermoplastics injection molding

机译:热塑性注塑成型填充速度的自适应控制

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Injection velocity, a key variable in injection molding, was controlled via an adaptive controller using a self tuning regulator (STR) scheme. The pole-placement design was employed first, together with the performance enhancement techniques of anti-windup estimation, feed-forward control, and cycle-to-cycle adaptation. The pole-placement design with the enhancement techniques was found experimentally to work very well over different molding conditions. However, this design was also found to be sensitive to the model mismatch. To overcome this problem, a new adaptive controller based on a generalized predictive control (GPC) principle was designed to make the controller more robust. Experiments have shown that the adaptive GPC control of injection velocity has inherently good set-point tracking performance and excellent tolerance to model structure mismatch.
机译:注射速度是注塑成型中的关键变量,可通过自适应控制器使用自调节调节器(STR)方案进行控制。首先采用了极点布置设计,并结合了抗饱和估计,前馈控制和逐周期自适应的性能增强技术。实验发现,采用增强技术的极点布置设计可以在不同的成型条件下很好地工作。但是,还发现该设计对模型不匹配敏感。为了克服这个问题,设计了一种基于广义预测控制(GPC)原理的新型自适应控制器,以使该控制器更加鲁棒。实验表明,注射速度的自适应GPC控制具有固有的良好设定点跟踪性能和对模型结构失配的出色耐受性。

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