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A linear combination of current and voltage based flux observers for direct torque controlled IPM drives

机译:用于直接扭矩控制IPM驱动器的电流和电压的磁通观察器的线性组合

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Flux observers in direct torque controlled (DTC) interior mounted permanent magnet (IPM) machine drives are of paramount importance as the drives rely on observed flux for control of the machine flux and torque. It is well known that a current based (CB) observer performs better at low speeds, whereas a voltage based (VB) observer is more accurate at high speeds. Hence, a large number of state-of-the-art DTC drives utilize the combination of CB and VB observers, known as hybrid observer (HO), for a wide speed operating range. However, because the VB observer accuracy becomes extremely poor when the speed approaches to zero, the performance and current waveforms of the DTC drive with the conventional HO significantly deteriorate. To overcome the performance deterioration at low speeds, an alternative combination of the CB and VB observers are proposed with a simple approach. In the proposed scheme, the performance deterioration and inaccurate estimations at low and high speeds due to the cross-interference between the CB and VB observers are avoided without an extra hardware or computational burden. Experimental results on a 10kW IPM machine designed for traction applications validate the superiority of the proposed approach.
机译:直接扭矩控制(DTC)内部安装的永磁体(IPM)机器驱动器的助焊器观察者是至关重要的,因为驱动器依赖于观察到的磁通量来控制机芯和扭矩。众所周知,基于电流的(CB)观察者以低速执行更好,而基于电压(VB)观察者的高速更准确。因此,大量的国家的最先进的DTC驱动器利用CB和VB观察员,称为混合观察者(HO)的组合,对于一个宽的速度运行范围。然而,由于当速度达到零时,VB观察者精度变得极差,因此DTC驱动器的性能和电流波形具有传统的HO的显着恶化。为了克服低速的性能劣化,提出了一种简单的方法,提出了CB和VB观察者的替代组合。在所提出的方案中,由于CB和VB观察者之间的交叉干扰,在没有额外的硬件或计算负担的情况下,避免了由于CB和VB观察者之间的交叉干扰而处于低速和高速的性能恶化和不准确的估计。为牵引应用设计的10KW IPM机器上的实验结果验证了所提出的方法的优越性。

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