集成调制器的连续控制集预测控制在永磁同步电机中的应用

S. Hanke, O. Wallscheid, J. Böcker
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引用次数: 16

摘要

电气驱动控制的一个关键方面是对高控制性能的要求。除了短的稳定时间和小的设定值偏差外,还需要低电流纹波。不可避免的纹波是由所用电压源逆变器的开关原理引起的。在确定驱动变量时对纹波的考虑不同于现有的控制方法,如场定向控制(FOC)、有限控制集(FCS)或连续控制集(CCS)模型预测控制(MPC)。这也取决于是否使用专用调制器。提出了一种集成调制器的CCS-MPC,在优化过程中充分考虑了类脉宽调制器(PWM)的原理。设定值偏差和电流纹波是优化问题的目标。在这里,研究了选择合适的成本函数,使其在稳态时与FOC方法的性能相当,在瞬态时与MPC方法的性能相当。所选择的代价函数还定义了在每个控制器周期内要在线解决的优化问题的类别。在仿真研究的基础上,建立了以永磁同步电机(PMSM)和qpOASES为求解器的实时优化实验装置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Continuous-Control-Set Model Predictive Control with Integrated Modulator in Permanent Magnet Synchronous Motor Applications
A key aspect in the control of electrical drives is the demand for a high control performance. In addition to a short settling time and a small setpoint deviation, a low current ripple is desired. The unavoidable ripple is caused by the switching principle of the used voltage-source inverters. The consideration of the ripple when determining the actuating variables differs between the established control approaches such as the field-oriented control (FOC), the finite-control-set (FCS), or the continuous-control-set (CCS)model predictive control (MPC). This also depends on whether a dedicated modulator is used or not. A CCS-MPC with integrated modulator which takes the principle of a pulse width modulation-like modulator (PWM)during optimization into account is presented. The setpoint deviation and the current ripple are the objectives of a optimization problem. Here, choosing an appropriate cost function is investigated such that the performance in steady state is comparable to that of a FOC and during transients to that of a MPC approach. The chosen cost function also defines the class of the optimization problem to be solved online in each controller cycle. Besides a simulative investigation, an experimental setup with a permanent magnet synchronous motor (PMSM)and qpOASES as solver for real-time optimizations was implemented.
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