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Fine sensorless force control using stribeck model for injection molding machine

机译:使用stribeck模型对注塑机进行无传感器的精细力控制

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摘要

Injection molding is a common method for producing various resin products. The force control system of a typical injection molding machine obtains information about the force from the environment of the machine via a force sensor. However, because a force sensor often has disadvantages such as signal noise, high cost, and narrow bandwidth, a reaction force observer has been developed for electric injection molding machines. The high-order reaction force observer (HORFO) is developed which includes a friction compensation element and uses the dither signal insertion method. However, the static frictional force and dynamic friction force have been not considered in this reaction force estimation observer, and accurate force control is difficult because of estimation error. In this paper, we propose a new friction model that takes into account the stribeck effect in order to improve the estimation error problem in force sensorless estimation. In addition the effectiveness of the proposed method is investigated in actual experiments using an injection molding machine.
机译:注射成型是生产各种树脂产品的常用方法。典型的注塑机的力控制系统通过力传感器从机器的环境中获得有关力的信息。然而,由于力传感器通常具有诸如信号噪声,高成本和窄带宽的缺点,因此已经开发了用于电动注塑机的反作用力观察器。开发了一种高阶反作用力观察器(HORFO),它包括一个摩擦补偿元件,并使用了抖动信号插入方法。但是,在该反作用力推定观察器中未考虑静摩擦力和动摩擦力,由于推定误差,难以进行精确的力控制。在本文中,我们提出了一种新的摩擦模型,该模型考虑了频闪效应,以改善无力传感器估计中的估计误差问题。另外,在实际实验中使用注射成型机研究了所提出的方法的有效性。

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