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Data-driven online temperature compensation for robust field-oriented torque-controlled induction machines

机译:数据驱动的在线温度补偿,用于强大的磁场定向转矩控制感应电机

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摘要

Squirrel-cage induction machines (IMs) with indirect field-oriented control are widely used in industry and are frequently chosen for their accurate and dynamic torque control. During operation, however, temperature rises leading to changes in machine parameters. The rotor resistance, in particular, alters, affecting the accuracy of the torque control. The authors investigated the effect of a rotor resistance parameter mismatch in the control algorithm on the angular rotor flux misalignment and the subsequent deviation of stator currents and motor torque from their setpoints. Hence, an online, data-driven torque compensation to eliminate the temperature effect is proposed to enable robust torque-controlled IMs. A model-based analysis and experimental mapping of the temperature effect on motor torque is presented. A temperature-torque lookup-table is subsequently implemented within the control algorithm demonstrating the ability to reduce the detrimental effect of temperature on torque control. Experimental results on a 5.5 kW squirrel-cage induction motor show that the proposed data-driven online temperature compensation method is able to reduce torque mismatch when compared to having no temperature compensation. Up to 17% torque mismatch is reduced at nominal torque and even up to 23% at torque setpoints that are lower than 20% of the nominal torque. A limited torque error of <1% remains in a broad operating range.
机译:具有间接磁场定向控制的鼠笼式感应电机(IMs)在工业中得到广泛使用,并且由于其精确和动态的转矩控制而经常被选择。但是,在运行期间,温度升高会导致机器参数发生变化。特别是转子电阻会发生变化,从而影响转矩控制的精度。作者研究了控制算法中转子电阻参数失配对角转子磁通失准以及随后定子电流和电动机转矩偏离其设定值的影响。因此,提出了一种在线的,数据驱动的扭矩补偿来消除温度影响,以实现强大的扭矩控制IM。提出了基于模型的分析和温度映射对电动机转矩的实验映射。随后在控制算法中实现了温度-扭矩查找表,该表证明了减少温度对扭矩控制的不利影响的能力。在5.5 kW鼠笼式感应电动机上的实验结果表明,与没有温度补偿的情况相比,该数据驱动的在线温度补偿方法能够减少转矩不匹配。在标称转矩下,最多可减少17%的转矩不匹配,在低于标称转矩的20%的转矩设定点上,甚至最多可减少23%。 <1%的有限扭矩误差可在较宽的工作范围内保持。

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