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首页> 外文期刊>IEEE Transactions on Power Electronics >Field oriented control of induction machines employing rotor end ring current detection
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Field oriented control of induction machines employing rotor end ring current detection

机译:采用转子端环电流检测的感应电机的磁场定向控制

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摘要

The usual method of induction motor torque control uses the indirect field orientation principle in which the rotor speed is sensed and slip frequency is added to form the stator impressed frequency. Unfortunately, the rotor resistance varies as the motor heats up under load thereby changing the rotor time constant which has a deleterious effect on the torque response. In this paper two new field oriented control schemes are presented which employ rotor end ring current detection and thereby remove the dependence of the controller accuracy on temperature so that the controller is entirely independent of rotor time constant variations. The field orientation schemes do not require an incremental encoder for rotor position sensing. The motor torque can be accurately controlled even down to zero speed operation.
机译:感应电动机转矩控制的常用方法采用间接磁场定向原理,该原理中感测转子速度并添加转差频率以形成定子施加频率。不幸的是,随着电动机在负载下加热,转子电阻会发生变化,从而改变转子时间常数,这会对转矩响应产生不利影响。在本文中,提出了两种新的磁场定向控制方案,它们采用了转子端环电流检测,从而消除了控制器精度对温度的依赖性,从而使控制器完全不受转子时间常数变化的影响。磁场定向方案不需要用于转子位置感测的增量编码器。甚至在低速运行时也可以精确控制电动机转矩。

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