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Braking Scheme for Vector-Controlled Induction Motor Drives Equipped With Diode Rectifier Without Braking Resistor

机译:用于矢量控制的感应电机驱动器的制动方案,配备二极管整流器而无需制动电阻

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This paper deals with sensorless vector control of PWM-inverter-fed induction motor drives equipped with a three-phase diode rectifier. An electronically controlled braking resistor across the dc link is not used. Instead, the power regenerated during braking is dissipated in the motor while a de-link over-voltage controller limits the braking torque. Losses in the motor are increased by an optimum flux-braking controller, maximizing either the stator voltage or the stator current depending on the speed. Below the rated speed, the braking times are comparable to those achieved using a braking resistor. The proposed braking scheme is very simple and causes no additional torque ripple. Experimental results obtained using a 2.2-kW induction motor drive show that the proposed scheme works well.
机译:本文涉及配备有三相二极管整流器的PWM - 逆变器馈电电动机驱动器的无传感器矢量控制。不使用DC链路上的电子控制制动电阻。相反,在制动期间再生的功率在电动机中消散,而去链路过电压控制器限制制动扭矩。电动机中的损耗由最佳磁通制动控制器增加,最大化定子电压或定子电流根据速度最大化。低于额定速度,制动时间与使用制动电阻实现的制动时间相当。所提出的制动方案非常简单,不会导致额外的扭矩波动。使用2.2-kW感应电动机驱动的实验结果表明,所提出的方案运作良好。

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