基于DSP交流驱动的低成本相电流传感

F. Parasiliti, R. Petrella, M. Tursini
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引用次数: 27

摘要

本文介绍了基于低成本的上一代/spl mu/C DSP (TMS320F24x)的两种相电流传感技术的实现。第一个是基于测量放在逆变器直流母线上的并联电阻的电流,第二个是基于测量放在逆变器每个小腿的IGBT发射极上的并联电阻的电流。这些传感器提供的信息与脉宽调制(PWM)信息一起用于重建电机相电流。在描述了这两种方法及其局限性之后,说明了在感应电机驱动情况下的应用,其中使用相邻矢量空间矢量脉宽调制(AV-SVPWM)技术来驱动逆变器。对系统各部分的非理想性能(死区时间、电源开关驱动延迟、电流上升和稳定时间、A/D转换模块采样时间)进行了详细的研究,并讨论了具体的硬件实现。给出了两种方法的实验结果和比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low cost phase current sensing in DSP based AC drives
This paper presents the implementation of two techniques for phase current sensing based on a low cost last generation /spl mu/C DSP (TMS320F24x). The first one is based on the measurement of the current flowing in a shunt resistor put in the DC bus of the inverter, the second one is based on the measurement of the current flowing in shunt resistors put in series to the emitter of the IGBT for each lower leg of the inverter. The information provided by these sensors, together with the pulse width modulation (PWM) information, is used to reconstruct the motor phase currents. After a description of the two methods and the limitations they present, an application in case of an induction motor drive is illustrated in which the adjacent vector-space vector pulse width modulation (AV-SVPWM) technique is used to drive the inverter. Some aspects involving the non ideal behaviour of different parts of the system (presence of dead time, power switches driver delay, rise and settling time of the current, A/D conversion module sampling time) are investigated in details and the specific hardware implementation is discussed. Experimental results and comparisons between the two methods are presented.
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