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Microstepping Drives Approaches to Improve Machine Carriage/ Conveyor Movement

机译:微步进驱动方法可改善机器托架/输送机的运动

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摘要

Due to the microstepping advantages, the research anduddevelopment has been done to provide better technique and signal processing for microstepping drives for each type of stepper motor. This article will discuss on experiment on two techniques to provide microstepping for bipolar stepper motor. The study is focused on controlling microstepping using two methods; “ON”,“OFF” delay control signal (ODC) and “ON”,”OFF” with pulse width modulation control (OPWMC) signal. The purpose of the study is to improve the movement of the conveyor or carriage part of a machine which is driven by a bipolar stepper motor. The experiment is done on the carriage movement control with two type of driving style; direct winding control (DWC) and conductive control (CC). The performance is referred from the distance movement (axis) of the carriage machine (left right/rightleft). The results are show that the DWC with OPWMC technique give more precise movement from CC with ODC and DWC without OPWMC technique to correct the distance movement error and reducing the resonance occurred during stepper motor drives.
机译:由于微步进的优势,已经进行了研究和开发,以为每种类型的步进电机的微步进驱动器提供更好的技术和信号处理。本文将讨论两种为双极步进电机提供微步进的技术的实验。该研究的重点是使用两种方法控制微步进。带有脉冲宽度调制控制(OPWMC)信号的“ ON”,“ OFF”延迟控制信号(ODC)和“ ON”,“ OFF”。这项研究的目的是改善由双极步进电机驱动的机器的输送机或托架部分的运动。实验是在两种行驶方式的滑架运动控制上完成的。直接绕组控制(DWC)和导电控制(CC)。性能取决于滑架机器的距离运动(轴)(左右/左右)。结果表明,采用OPWMC技术的DWC与采用ODCC的CC和不采用OPWMC技术的DWC相比,可提供更精确的运动,以校正距离运动误差并减少步进电机驱动期间发生的共振。

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