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首页> 外文期刊>IEEE / ASME Transactions on Mechatronics >Performance optimization of a fast tool servo for single-point diamond turning machines
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Performance optimization of a fast tool servo for single-point diamond turning machines

机译:用于单点金刚石车床的快速工具伺服系统的性能优化

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This paper describes a new, fast tool servo system designed for fabrication of nonrotationally symmetric components using single-point diamond turning machines. A prototype device, designed for flexible interfacing to typical machine tool controllers, is described, along with performance testing data of tilted flat and off-axis conic sections. Techniques for controlling the piezoelectric actuator to less than 1% error are discussed. The performance of a standard integral controller shows a significant error due to hysteresis in the actuator. The effects of the hysteresis were reduced by implementing two control schemes, an optimized PID controller and a technique that utilizes a dynamic compensator module in conjunction with the linear controller. The compensator samples the hysteretic voltage/displacement relationship in real time and modifies the effective gain accordingly. Experimental implementation results in an 80% reduction in the motion error caused by hysteresis, but peak-to-valley errors are limited by side effects from the compensation.
机译:本文介绍了一种新的快速工具伺服系统,该系统设计用于使用单点金刚石车床制造非旋转对称组件。描述了一种原型设备,该设备旨在灵活地连接到典型的机床控制器,并提供了倾斜的平坦和离轴圆锥截面的性能测试数据。讨论了控制压电致动器误差小于1%的技术。由于执行器中的磁滞,标准积分控制器的性能显示出明显的误差。通过实施两种控制方案(一种优化的PID控制器)和一种将动态补偿器模块与线性控制器结合使用的技术,可以减少磁滞的影响。补偿器实时采样磁滞电压/位移关系,并相应地修改有效增益。实验实现可将由磁滞引起的运动误差降低80%,但峰谷误差受补偿的副作用限制。

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