基于DSP的直接转矩控制永磁同步电机滑模速度控制器的实现

B. Singh, B.P. Singh, S. Dwivedi
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引用次数: 4

摘要

研究了基于DSP的直接转矩控制永磁同步电机(PMSM)滑模速度控制器的实现。驱动系统由电源电路和控制硬件组成。前者具有基于绝缘栅双极晶体管(IGBT)的电压源逆变器(VSI)和栅极驱动电路,后者具有电压和电流传感器及其接口电路。采用DSP-ADMC401汇编语言实现了基于位置信号的转子转速估计、SM速度控制器、转矩、磁链和扇区估计器以及VSI门控脉冲生成的最佳电压矢量选择表。利用Simulink和PSB工具箱在MATLAB环境下建立了永磁同步电机驱动系统的仿真模型,对所提出的驱动系统的性能进行了分析。通过起动、调速、负载摄动和稳态工况的试验结果,验证了永磁同步电机调速驱动器的仿真性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DSP Based Implementation of Sliding Mode Speed Controller for Direct Torque Controlled PMSM Drive
This paper deals with the DSP based implementation of a sliding mode (SM) speed controller for direct torque controlled (DTC) permanent magnet synchronous motor (PMSM) drive. The drive system consists of power circuit and control hardware. The former has insulated gate bipolar transistor (IGBT) based voltage source inverter (VSI) and gate driver circuit, while the latter has voltage and current sensors and their interfacing circuits. The rotor speed estimation from the sensed position signals, SM speed controller, torque, flux, and sector estimator and optimum voltage vector selection table for gating pulse generation of VSI are implemented in assembly language of DSP-ADMC401. The simulation model of the PMSM drive system is developed in MATLAB environment with Simulink and PSB toolboxes to analyze the performance of the proposed drive system. The simulated performance of SM speed controlled PMSM drive is validated with the test results for starting, speed reversal, load perturbation and steady-state operating conditions.
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