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Stator flux based speed sensorless control of single phase induction motor drives

机译:基于定子通量的单相电动机驱动器无速度传感器控制

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Single phase induction motors (SPIM) are widely used at low power levels because of their simple construction, robust nature and nominal price. Conventionally, they have one operational stator winding and the speed of the motor is not controlled. But SPIM drives for higher power levels have both main and auxiliary winding remaining operational throughout and can be treated as asymmetrical, two-phase machines. High performance operation of these asymmetrical machines is associated with the problems of modeling the asymmetry and controlling the electromagnetic torque oscillations. Different research groups have proposed different schemes to tackle the above said difficulties. In this paper, a novel vector control scheme is proposed based on the simplest mathematical model that works for diverse speed ranges far below and much above the base speed and excludes the traditional complexities found in high performance SPIM logics. Stress has been given on simplicity in modeling the asymmetry and designing the controllers. The controllers are simulated in synchronously rotating reference frame for which the stator voltages are transformed to synchronous reference frame by removing the asymmetrical terms and adding them later as decoupled voltages. The simulation results are given for various speeds below and above base speed to indicate the versatility of the scheme. To improve its adaptability, speed sensorless algorithm has also been added.
机译:由于其简单的施工,强大的自然和标称价格,单相电动机(SPIM)广泛使用。传统上,它们具有一个操作定子绕组并且不控制电动机的速度。但是对于更高功率水平的尖端驱动器具有主要和辅助绕组剩余的运行,并且可以被视为不对称的两相机器。这些不对称机器的高性能操作与建模不对称和控制电磁扭矩振荡的问题有关。不同的研究组提出了不同的方案来解决上述困难。本文基于最简单的数学模型提出了一种新的矢量控制方案,这些模型用于远低于基本速度的多种速度范围,并排除了高性能SPIM逻辑中的传统复杂性。在模拟不对称和设计控制器的简单性方面已经给出了压力。在同步旋转参考帧中模拟控制器通过去除不对称术语并将其作为去耦电压添加到同步参考帧中。仿真结果用于低于和高于基准速度的各种速度,以指示方案的多功能性。为了提高其适应性,还添加了速度无传感器算法。

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