替代能源汽车驱动系统失谐最小化

H. Rehman
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引用次数: 3

摘要

间接场定向(IFO)感应电动机是替代能源汽车中最常用的驱动系统之一。由于电机温度的变化引起转子时间常数的变化,即所谓的失谐,是这种驱动系统的主要问题之一。本文提出了一种离线技术和一种在线技术,并对它们克服失谐问题进行了比较。离线技术采用转差增益调度器,在线技术采用模型参考自适应系统(MRAS)进行转子电阻自适应。脱机方案设置各种工况下的转差增益,是基于若转子电阻设置合理,且实现了磁场定向,则转矩电流与输出转矩之间应呈线性关系。转子电阻在线自适应技术基于电流模型磁链观测器,利用了理想磁场驱动系统沿q轴磁链为零的特点。该条件作为MRAS方案的参考模型,而当前模型磁链观测器作为可调模型。调整可调模型中的转子电阻,使沿q轴的磁通变为零,从而使转子电阻达到其精确值。通过实验结果对所提出的离线和在线方案克服失谐问题的有效性进行了分析和验证。
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Detuning minimization for alternative energy vehicular drive system
An Indirect Field Oriented (IFO) induction motor is one of the most commonly used drive system for the alternative energy vehicles. The variation in the rotor time constant due to change in the motor temperature so called the detuning is one of the major problem for such a drive system. This paper proposes an offline and an online technique and compares them for overcoming the detuning problem. The offline technique suggests a slip gain scheduler while the online technique is designed using Model Reference Adaptive System (MRAS) for the rotor resistance adaptation. The offline scheme sets the slip gain at various operating conditions based on the fact that if the rotor resistance is set properly and field orientation is achieved, then there should be a linear relationship between the torque current and the output torque. The online rotor resistance adaptation technique is based on current model flux observer and it utilizes the fact that the rotor flux along q-axis for an ideal field oriented drive system should be zero. This condition acts as a reference model for the proposed MRAS scheme whiles the current model flux observer is selected as an adjustable model. The rotor resistance in the adjustable model is tuned such that the flux along the q-axis becomes zero thus setting the rotor resistance to its accurate value. The effectiveness of the proposed offline and online schemes for overcoming the detuning problem is analyzed and verified through the experimental results.
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