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Optimal Predictive Torque Control of Two PMSM supplied in Parallel on a Single Inverter

机译:在单个逆变器上并联提供的两个PMSM的最优预测转矩控制

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This paper presents a new approach of Optimal Predictive Torque Control (OPTC) for two Permanent Magnet Synchronous Machines supplied in parallel on a single mutualized three-leg two-level inverter. In the field of multi synchronous machine control with a single inverter, the classic Predictive Torque Control (PTC) rests on the selection of a configuration of switches among a discrete set of possible solutions by the minimization of a single criterion of performance, sum of the criteria specific to each machine. It leads then to the definition of an applied voltage which results from a compromise between the machines. The method suggested here rests on the calculation of the optimal controls on a continuous set of solutions for each of the two machines separately, and the generation of the final applied voltage via the calculation of a mean value. In addition to the reduction of the highly-reduced computing time, this control law improves the Total Harmonic Distortion (THD) of the line currents.
机译:本文提出了一种新的最优预测转矩控制(OPTC)方法,该方法适用于在单个互相关的三臂两电平逆变器上并行提供的两台永磁同步电机。在具有单个逆变器的多同步电机控制领域中,经典的预测转矩控制(PTC)在于通过最小化单个性能指标(即总和)来选择一组离散的可能解决方案中的开关配置。每台机器特定的标准。这导致了由于机器之间的折衷而产生的施加电压的定义。此处建议的方法取决于分别针对两台机器中的每台机器在一组连续解上的最佳控制的计算,以及通过平均值的生成最终施加的电压。除了减少大量减少的计算时间外,该控制定律还改善了线路电流的总谐波失真(THD)。

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