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Target Tracking in Micro Injection Molding

机译:微注射成型中的目标跟踪

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摘要

The precision control of the injection process in micro injection molding demands precise tracking of the moment that melt front passes through the nozzle so that accurate prediction of the amount of melt being injected into the mould can be achieved. The tracking accuracy, to large extent, depends on the processing of pressure signals followed by the identification of the critical moment that melt front reaches the nozzle. A new adaptive Kalman filter was introduced in this study to calculate and predict the amount of melt injected. The filter eliminated the delay error and was more robust than other filters. The adaptive Kalman filter switches between two Qs for steady-state and transient estimations, allowing resetting of the Kalman gain so that convergence is speeded up in calculations. Experimental and simulation results prove the effectiveness of the method proposed.
机译:微注射成型中注射过程的精确控制需要精确跟踪熔体前沿通过喷嘴的时刻,以便可以准确预测注入模具的熔体量。跟踪精度在很大程度上取决于压力信号的处理,然后确定熔体前沿到达喷嘴的关键时刻。这项研究中引入了一种新的自适应卡尔曼滤波器,以计算和预测注入的熔体数量。该滤波器消除了延迟误差,并且比其他滤波器更耐用。自适应卡尔曼滤波器可在两个Q之间切换以进行稳态和瞬态估计,从而可以重置卡尔曼增益,从而加快了计算的收敛速度。实验和仿真结果证明了该方法的有效性。

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