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Research on DTC system with variable flux for switched reluctance motor

机译:开关磁阻电机变通量DTC系统的研究

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When switched reluctance motor(SRM) is in the status of the traditional direct torque control(DTC) system, due to the high saturation nonlinearity of the electromagnetic relationships of switched reluctance motors, the torque ripple and the stator phase current are larger. In order to resolve the above problems, through the analysis and deduction for SRM flux model and the influence of characteristics of flux and speed on torque ripple, this paper presents a variable-flux control strategy with the three closed-loop structure based on the critical flux supersaturated speed. And a DTC system of SRM with variable flux and three closed-loop is built up in Matlab/simulink. Moreover, the DSP hardware experiment platform based on the TMS320F2812 is established to validate the performance of the improved algorithm. The simulation and experimental results show that the new scheme has an obvious effect on torque ripple reduction, and the three — phase stator current is obviously reduced, which greatly reduces the stator winding copper consumption during the operation of SRM. Moreover, the improved system has good system stability.
机译:当开关磁阻电动机(SRM)处于传统直接转矩控制(DTC)系统的状态时,由于开关磁阻电动机的电磁关系具有很高的饱和非线性,因此转矩脉动和定子相电流会更大。为了解决上述问题,通过对SRM磁通模型的分析和推导,以及磁通量和速度特性对转矩脉动的影响,提出了基于临界点的三闭环结构的可变磁通控制策略。磁通过饱和速度。在Matlab / simulink中建立了具有可变通量和三个闭环的SRM DTC系统。此外,建立了基于TMS320F2812的DSP硬件实验平台,以验证改进算法的性能。仿真和实验结果表明,该方案对减小转矩脉动有明显效果,三相定子电流明显减小,大大降低了SRM运行过程中定子绕组的铜消耗。而且,改进的系统具有良好的系统稳定性。

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