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An Approach to Producing Controlled Radial Force in a Switched Reluctance Motor

机译:开关磁阻电动机中产生受控径向力的一种方法

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Unbalanced radial force acting on a rotor shaft is undesirable because it causes motor vibrations. However, motor vibrations can be reduced with intentionally produced shaft radial force which cancels the existing unbalanced radial forces due to a nonuniform air gap or external load. Due to its special structure, the shaft radial force and torque of a switched reluctance motor (SRM) can be separately controlled when all pole currents are controlled independently. However, control of SRM radial force is rarely discussed in the existing literature. This paper presents a scheme that produces a controlled radial force for a 12/8-pole SRM. In this scheme, mutual inductances between stator poles are included in the control model. The motor torque is controlled with the conventional method, i.e., all poles in the conduction phase are energized with the same current to produce the desired torque. Two extra poles from the descending-inductance phase are energized to produce the desired radial force. The cross-coupling torque produced by the force producing poles is compensated. The experimental results have verified that when controlled with the proposed scheme, the SRM was able to produce a controlled radial force when at standstill or running, and subjected to a load torque.
机译:作用在转子轴上的径向力不平衡是不希望的,因为它会引起电动机振动。但是,可以通过有意产生的轴径向力来减小电动机的振动,该轴径向力可以消除由于不均匀的气隙或外部负载而导致的现有不平衡径向力。由于其特殊的结构,当单独控制所有极电流时,可以分别控制开关磁阻电机(SRM)的轴径向力和转矩。但是,在现有文献中很少讨论对SRM径向力的控制。本文提出了一种为12/8极SRM产生受控径向力的方案。在该方案中,控制模型中包含了定子磁极之间的互感。用常规方法控制电动机转矩,即,在导通阶段中的所有极都以相同的电流通电以产生所需的转矩。来自下降电感阶段的两个额外的磁极通电以产生所需的径向力。力产生极产生的交叉耦合转矩得到补偿。实验结果证明,当采用建议的方案进行控制时,SRM能够在静止或运行时产生受控的径向力,并承受负载转矩。

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