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Current-controller with single DC link current measurement for inverter-fed AC machines based on an improved observer-structure

机译:基于改进的观察器结构的逆变器供电的交流电机具有单个直流链路电流测量的电流控制器

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摘要

In modern industrial applications even low-cost drives have excellent dynamic behavior, which is achieved by field-oriented control combined with high-dynamic current regulation. Usually at least two phase-current sensors are necessary to realize such an operation. In this paper, a new current-control scheme is presented, which enables high-dynamic control of ac machine-line currents with improved accuracy by measuring only the current of the dc-link. The controller is based on three individual and adaptive phase-current observers, which guarantee very accurate phase-current estimates even at low-modulation indices. Thus, operation is possible even at low-speed without modifying the switching pattern of the controller and the necessary modification at zero-speed can be clearly reduced. Different realizations of the proposed scheme are given and a comparison is made to previously published schemes which are also based on a single dc-link current sensor. Measurements performed on an induction-machine drive at different points of operation show the applicability of the proposed structure. It is shown that the long-term accuracy is clearly increased and the maximum deviation of the observer estimate from the actual phase-current is reduced when using the proposed scheme.
机译:在现代工业应用中,甚至低成本驱动器也具有出色的动态性能,这是通过将磁场定向控制与高动态电流调节相结合来实现的。通常至少需要两个相电流传感器来实现这种操作。在本文中,提出了一种新的电流控制方案,该方案通过仅测量直流环节的电流,就可以以更高的精度对交流电机线电流进行高动态控制。该控制器基于三个独立的自适应相电流观测器,即使在低调制指数下,也可以保证非常准确的相电流估计。因此,即使在低速下也可以操作而无需修改控制器的开关模式,并且可以明显减少零速下的必要修改。给出了所提出方案的不同实现,并且与也基于单个直流母线电流传感器的先前发布的方案进行了比较。在感应电机驱动器的不同操作点上进行的测量表明,所提出结构的适用性。结果表明,使用该方案时,长期精度明显提高,并且观察者估计值与实际相电流的最大偏差减小。

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