Implementation of two-axis highly accurate position control of space-vector PWM based microstepping bipolar drive

Conference proceedings article


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Publication Details

Author listYodsanti C., Konghirun M.

PublisherHindawi

Publication year2008

Start page1027

End page1031

Number of pages5

ISBN9787506292214

eISSN1745-4557

URLhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-67649437279&partnerID=40&md5=a0c3cb5b6e1e5302b653aeda40c9e11f

LanguagesEnglish-Great Britain (EN-GB)


Abstract

This paper presents a digital implementation of two-axis position control of microstepping bipolar drive with the controlled current, depending on the load torque applied. The topology of power converter for each motor is the conventional three-phase inverter, using space-vector pulse-width-modulation (PWM) technique. It is well known that the microstepping technique allows the stepping motor rotating in a fraction of its full step. In high precision applications, the less fractional step is necessary to achieve this requirement and typically operated at low speeds. Consequently, the currents should also be controlled using PWM during this low speed operation, otherwise the over currents could be happened due to low back EMF. In this paper, the step resolutions can be configurable using zero-order-hold (ZOH) to generate the discrete sinusoidal command voltages with their peaks generated by PI current controller. The overall system of two-axis position control drive system is implemented on a single fixed-point TMS320F2808 digital signal processor (DSP), using object oriented programming (OOP). Experimental results are presented to validate the implementing system.


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Last updated on 2022-06-01 at 15:28