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The feedrate scheduling of NURBS interpolator for CNC machine tools

机译:数控机床NURBS插补器的进给率调度

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This paper proposes an off-line feedrate scheduling method of CNC machines constrained by chord tolerance, acceleration and jerk limitations. The off-line process for curve scanning and feedrate scheduling is realized as a pre-processor, which releases the computational burden in real-time task. The proposed method first scans a non-uniform rational B-spline (NURBS) curve and finds out the crucial points with large curvature (named as critical point) or G~0 continuity (named as breakpoint). Then, the NURBS curve is divided into several NURBS sub-curves using curve splitting method which guarantees the convergence of predictor-corrector interpolation (PCI) algorithm. The suitable feedrate at critical point is adjusted according to the limits of chord error, centripetal acceleration and jerk, and at breakpoint is adjusted based on the formulation of velocity variation. The feedrate profile corresponding to each NURBS block is constructed according to the block length and the given limits of acceleration and jerk. In addition, feedrate compensation method for short NURBS blocks is performed to make the jerk-limited feedrate profile more continuous and precise. Because the feedrate profile is established in off-line, the calculation of NURBS interpolation is extremely efficient for CNC high-speed machining. Finally, simulations and experiments with two free-form NURBS curves are conducted to verify the feasibility and applicability of the proposed method.
机译:提出了一种受弦公差,加速度和加速度限制的约束的数控机床离线进给率调度方法。曲线扫描和进给率调度的离线过程实现为预处理器,从而减轻了实时任务的计算负担。该方法首先扫描非均匀有理B样条曲线(NURBS),找出曲率较大的临界点(称为临界点)或连续性为G〜0的临界点(称为断点)。然后,使用曲线分割方法将NURBS曲线分为几个NURBS子曲线,从而保证了预测校正校正插值(PCI)算法的收敛性。根据和弦误差,向心加速度和急动度的极限来调整临界点处的合适进给率,并根据速度变化的公式来调整断点处的合适进给率。对应于每个NURBS程序段的进给率曲线是根据程序段的长度以及给定的加速度和加速度率限制来构造的。此外,执行了针对NURBS短程序段的进给率补偿方法,以使受冲击力限制的进给率曲线更加连续和精确。由于进给率轮廓是离线建立的,因此NURBS插补的计算对于CNC高速加工非常有效。最后,通过两条自由形式的NURBS曲线进行仿真和实验,验证了该方法的可行性和适用性。

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