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首页> 外文期刊>IEEE transactions on control systems technology: A publication of the IEEE Control Systems Society >Real-Time Optimal Torque Control of Interior Permanent Magnet Synchronous Motors Based on a Numerical Optimization Technique
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Real-Time Optimal Torque Control of Interior Permanent Magnet Synchronous Motors Based on a Numerical Optimization Technique

机译:基于数值优化技术的内置式永磁同步电机实时优化转矩控制

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摘要

This study presents a real-time optimal torque control scheme for interior permanent magnet synchronous motors (IPMSMs). The proposed scheme enables computation of optimal current reference for a torque reference under all operating regions, including the maximum torque per ampere (MTPA), flux weakening (FW), maximum current (MC), and maximum torque per voltage (MTPV), using numerical optimization techniques to simplify the problems and obtain the corresponding solutions with reduced computation burden. Linearizing the torque equation of IPMSM is utilized to derive solutions for the MTPA and FW. These solutions are proved to converge to their optimum with the aid of the reference smoother. Numerical solutions for the MC and MTPV are derived based on the assumption that the resistive voltage drop is small enough but not zero. These solutions differ from the existing solutions that ignore the resistive voltage drop. The effectiveness of the proposed method is numerically and experimentally verified using a 7.5-kW IPMSM with a considerable reduction in computational time of approximately 90% in the simulation compared with the analytic solution.
机译:本文提出了一种内置式永磁同步电机(IPMSMs)的实时最优转矩控制方案。该方案能够计算出所有工作区域下转矩参考的最优电流参考,包括最大每安培转矩(MTPA)、弱磁(FW)、最大电流(MC)和最大转矩每电压(MTPV),利用数值优化技术简化问题,获得相应的解,降低计算负担。利用IPMSM的扭矩方程线性化来推导MTPA和FW的解。事实证明,这些解在参考平滑器的帮助下收敛到最佳状态。MC和MTPV的数值解是基于电阻压降足够小但不是零的假设推导的。这些解决方案与忽略电阻压降的现有解决方案不同。使用7.5 kW IPMSM进行了数值和实验验证了所提方法的有效性,与解析解相比,仿真计算时间大幅缩短了约90%。

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