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Residual Vibration Suppression Using Initial Value Compensation for Repetitive Positioning

机译:使用初始值补偿进行重复定位的残余振动抑制

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摘要

This paper presents a novel residual vibration suppression methodology for repetitive fast-response and high-precision positioning in machine tool drives. In sequential positioning motions, as the interval period of position references becomes shorter, the residual vibration in response due to undesired initial values deteriorates the positioning accuracy, since the positioning controller is generally designed on the condition that initial state variables are zero. In this research, an Initial Value Compensation (IVC) approach is proposed under the theoretical study on effects of the initial state values on the position transient response. The IVC can appropriately assign poles and zeros of the transfer characteristic of position output for the initial values by applying an additional input corresponding to the initial state variables, enabling the response to be residual vibration free. The desired positioning performance, as a result, can be achieved in repetitive motions with arbitrary interval period. The effectiveness of the proposed compensation has been verified by numerical simulations and experiments using a positioning device of industrial machine tools.
机译:本文提出了一种新颖的残余振动抑制方法,用于机床驱动器中的重复快速响应和高精度定位。在顺序定位运动中,随着位置参考的间隔周期变短,由于不希望的初始值引起的响应残留振动会降低定位精度,因为定位控制器通常是在初始状态变量为零的条件下设计的。在这项研究中,在关于初始状态值对位置瞬态响应的影响的理论研究下,提出了一种初始值补偿(IVC)方法。通过应用与初始状态变量相对应的附加输入,IVC可以为初始值适当分配位置输出的传递特性的零点和零点,从而使响应无残留振动。结果,可以在具有任意间隔周期的重复运动中实现期望的定位性能。使用工业机床的定位装置通过数值模拟和实验验证了提出的补偿的有效性。

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