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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Robust Maximum Torque per Ampere (MTPA) Control of PM-Assisted SynRM for Traction Applications
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Robust Maximum Torque per Ampere (MTPA) Control of PM-Assisted SynRM for Traction Applications

机译:用于牵引应用的PM辅助SynRM的强大的每安培最大转矩(MTPA)控制

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摘要

Recently, permanent-magnet-assisted (PMa) synchronous reluctance motors (SynRMs) have been introduced as a possible traction motor in hybrid electric vehicle applications. In order to achieve maximum torque per ampere (MTPA), knowledge of the motor parameters is necessary. Due to the high ambient temperature inside the engine cavity as well as the saturation effect, variation of motor parameters such as inductances and permanent magnet (PM) flux density is not avoidable. Offline models for estimating the motor parameters are known as a computationally intensive method, particularly, when the effect of cross saturation and PM flux deterioration are included. In this paper, a practical MTPA control scheme, along with a simple parameter estimator for the PMa SynRM, is introduced. This method is capable of maintaining the MTPA condition and stays robust against motor parameter variations. To verify the validity and feasibility of the proposed controller, several simulations and experiments results on a low-power laboratory prototype PMa SynRM have been presented.
机译:最近,永磁混合(PMa)同步磁阻电机(SynRMs)已被引入作为混合动力电动汽车应用中可能的牵引电机。为了获得最大的每安培转矩(MTPA),必须了解电动机参数。由于发动机腔体内的环境温度较高以及存在饱和效应,因此无法避免电动机参数(例如电感和永磁(PM)磁通密度)的变化。用于估计电动机参数的离线模型是一种计算密集型方法,特别是当包含交叉饱和和PM磁通退化的影响时。本文介绍了一种实用的MTPA控制方案,以及用于PMa SynRM的简单参数估计器。这种方法能够维持MTPA条件,并能抵抗电机参数变化。为了验证所提出控制器的有效性和可行性,在低功率实验室原型PMa SynRM上给出了一些仿真和实验结果。

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