Design and Implementation of Torque Control and Estimation for an Electric Hand-Tool

Tian‐Hua Liu, C. Peng
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Abstract

This paper proposes the design and implementation of torque control and torque estimation for an electric hand-tool. This hand-tool does not require any torque transducer or any Hall-effect sensor. Only some low-cost resistances are used to measure the stator currents of a brushless DC motor, which is used to drive the hand-tool. Novel 3-phase current commands are proposed here to obtain greater torque than traditional 3-phase, square-wave current commands. The output torque of the hand-tool can be estimated and displayed by an LED display. A PI controller is used to achieve the current-loop control. A digital signal processor, TMS-320-F2808 that was manufactured by Texas Instruments, is used to execute the control and estimation algorithms. Experimental results show the correctness and feasibility of the proposed methods.
电动手动工具转矩控制与估计的设计与实现
提出了一种电动手动工具转矩控制和转矩估计的设计与实现。这种手动工具不需要任何扭矩传感器或任何霍尔效应传感器。仅使用一些低成本的电阻来测量用于驱动手动工具的无刷直流电机的定子电流。为了获得比传统的三相方波电流指令更大的转矩,本文提出了一种新的三相电流指令。手动工具的输出扭矩可以通过LED显示屏进行估计和显示。采用PI控制器实现电流环控制。由德州仪器制造的数字信号处理器TMS-320-F2808用于执行控制和估计算法。实验结果表明了所提方法的正确性和可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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