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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Virtual design of a motor-toggle servomechanism with sliding mode-combined PID control
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Virtual design of a motor-toggle servomechanism with sliding mode-combined PID control

机译:滑模组合PID控制的电动伺服机构的虚拟设计

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This paper deals with the issue of virtual design of a motor-toggle servomechanism for injection-molding machines. Based on the 3D CAD of multi-body system, a five-point-type toggle mechanism has been developed with clamping force buildup. Prior to controller design, open-loop responses are obtained to derive a transfer function. In order to accommodate mismatches between the real plant and the linear model used, a discrete-time sliding function is defined and combined with PID control. The uncertainty in the mass of moving platen and the Coulomb friction at pin joints are considered for robust motion control applications. Through the use of proposed control scheme, not only significant reduction in position error at moving platen but also clamping force build-up is achieved appropriately.
机译:本文讨论了用于注塑机的电机切换伺服机构的虚拟设计问题。基于多体系统的3D CAD,开发了一种五点式肘节机构,该机构具有夹紧力累积功能。在控制器设计之前,先获得开环响应以导出传递函数。为了适应实际设备和所使用的线性模型之间的不匹配,定义了离散时间滑动函数并将其与PID控制结合使用。对于鲁棒的运动控制应用,考虑了动压板质量的不确定性以及销钉接头处的库仑摩擦。通过使用建议的控制方案,不仅可以显着减少移动压板的位置误差,而且还可以适当地建立夹紧力。

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