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A New Acceleration and Deceleration Algorithm and Applications

机译:一种新的加减速算法及其应用

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摘要

The control of acceleration and deceleration of stepper motor is one of the most key technologies of CNC system development. Acceleration is discontinuous in linear acceleration and decleration, which caused impact in NC machining. The exponential algorithm has a strong tracking capability but weak stability at higher speed. The questions could be overcome by conventional S-curve acceleration and deceleration implementation method, but the algorithm is too complex. So a new method was proposed to implement S-curve acceleration and deceleration. This paper presents five-stage model of S curve acceleration and deceleration algorithm to satisfy the actual roller polishing machine needs. The algorithm consists of five kinematic stages: increasing acceleration stage, decreasing acceleration stage, constantspeed stage, increasing deceleration stage and decreasing deceleration stage. At the starting point and the ending point, the velocity is zero and the jerk is absolutely the maximum value J. Analysis shows that: the acceleration curve of the algorithm is a continuous curve, and there is a first-order continuous relationship between time and speed, a smooth velocity and acceleration can be obtained, which is to avoid the impact when the CNC system accelerates and decelerates or reverses. The application on roller polishing machine shows that : compared with the traditional S-curve, the algorithm can make sure the acceleration is continuous, the speed changes smoothly, the flexibility is improved and the algorithm is easy to implement.
机译:步进电机的加减速控制是数控系统开发的最关键技术之一。加速度在线性加速度和去毛刺过程中是不连续的,从而对NC加工造成影响。指数算法具有较强的跟踪能力,但在较高速度下稳定性较弱。常规的S曲线加减速实现方法可以解决这些问题,但是算法过于复杂。为此,提出了一种新的方法来实现S曲线加减速。本文提出了S曲线加减速算法的五阶段模型,以满足滚筒抛光机的实际需求。该算法包括五个运动学阶段:增加加速阶段,减少加速阶段,恒速阶段,增加减速阶段和减少减速阶段。在起点和终点,速度为零,加加速度绝对为最大值J。分析表明:算法的加速度曲线为连续曲线,时间与时间之间存在一阶连续关系。速度,可以获得平稳的速度和加速度,从而避免了CNC系统加速,减速或倒车时的影响。在滚筒抛光机上的应用表明:与传统的S曲线相比,该算法可以确保加速度连续,速度变化平稳,提高了灵活性,易于实现。

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