A new direct field oriented controller employing rotor end ring current detection

T. Matsuo, V. Blasko, J. Moreira, T. Lipo
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引用次数: 2

Abstract

A novel direct field-oriented control scheme for induction motor drive applications that employs rotor end ring current detection and removes the dependence of the controller accuracy on temperature is presented. This field orientation scheme does not require an incremental encoder for rotor position sensing. The motor torque can be accurately controlled even down to zero frequency operation. The controller is completely independent of rotor time constant variations. The rotor end ring current is measured via Hall-effect sensors. An adaptive controller for the rotor current gains eliminates the error introduced in the measurement due to temperature changes of the Hall sensors. Consequently, the field-oriented controller remains robust, even for conditions where the machine internal air temperature reaches 100 degrees C. Experimental results showing the practical feasibility of the proposed direct field-oriented controller are presented.<>
采用转子端环电流检测的新型直接磁场定向控制器
提出了一种新的直接磁场定向控制方案,该方案采用转子端环电流检测,消除了控制器精度对温度的依赖。这种磁场定向方案不需要增量式编码器用于转子位置感知。电机转矩甚至可以精确控制到零频率运行。该控制器完全不受转子时间常数变化的影响。转子端环电流通过霍尔效应传感器测量。转子电流增益的自适应控制器消除了由于霍尔传感器温度变化而在测量中引入的误差。因此,即使在机器内部空气温度达到100摄氏度的情况下,磁场定向控制器仍然保持鲁棒性,实验结果表明了所提出的直接磁场定向控制器的实际可行性。
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