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Adaptive parametric interpolation scheme with limited acceleration and jerk values for NC machining

机译:有限加速度和加速度率值的自适应参数插补方案,用于数控加工

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摘要

Parametric interpolation has many advantages over the traditional linear or circular interpolation in computer numerical control (CNC) machining. The existing work in this regard is reported to have achieved constant feedrate, confined chord error and limited acceleration/ deceleration in one interpolator. However, the excessive jerk still exists due to abrupt change in acceleration profile, which will cause shock to the machine as well as deteriorate the surface accuracy. In this paper, an adaptive interpolation scheme incorporating machine's dynamics capability consideration is proposed and illustrated in details. In the proposed algorithm, the commanded feedrate is maintained at most of the time and adaptively reduced in large curvature areas to meet the demand of the machining accuracy requirement, while at the same time, the acceleration and jerk values are limited within the machine's capabilities during the whole interpolation process. It ensures a high machining accuracy, eliminates the phenomenon of overshoot/undershoot and reduces mechanical shock to the machine tools. The real-time performance of this interpolator is also measured to demonstrate its practical application. Two non-uniform rational B-spline (NURBS) curve interpolation experiments are provided to verify the feasibility and advantages of the proposed scheme.
机译:与计算机数控(CNC)加工中的传统线性或圆弧插补相比,参数插补具有许多优势。据报道,在这方面的现有工作在一个插补器中实现了恒定的进给速度,有限的弦误差和有限的加减速。但是,由于加速度曲线的突然变化,仍然存在过大的跳动,这将对机器造成冲击并降低表面精度。在本文中,提出并考虑了机器动力学性能的自适应插值方案。在提出的算法中,指令的进给率在大多数时间都保持不变,并在大曲率区域自适应降低,以满足对加工精度的要求,同时,加速度和加速度率值在机床的能力范围内受到限制。整个插值过程。它确保了较高的加工精度,消除了过冲/下冲现象,并减少了对机床的机械冲击。还对该插值器的实时性能进行了测量,以证明其实际应用。通过两个非均匀有理B样条曲线(NURBS)曲线插值实验,验证了该方案的可行性和优越性。

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