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Development of Two Novel Power Electronic Circuits for Dynamic Braking of Motors

机译:两种用于电机动态制动的新型功率电子电路的开发

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The goal of this study was to develop two dynamic braking schemes for a triac voltage-controlled variable-speed motor. In the beginning, it is proposed to operate the AC voltage controller as a half-wave-controlled AC-to-DC converter by inhibiting firing pulses to the triac in one half-cycle of supply voltage so that dynamic braking can be affected. It is found that such an attempt has failed, and during half-wave-controlled converter operation, the motor runs at very low speed. The causes of the failure are investigated, and then two power electronic circuits capable of affecting dynamic braking of motors with a half-wave-controller-fed operation are proposed. The first circuit employs controlled free-wheeling across the motor terminals, and the second method uses disconnection of auxiliary winding. Both methods are shown to achieve dynamic braking of the motor. Simulated and measured results are presented to show the effectiveness of the two circuits.
机译:这项研究的目的是为三端双向可控硅开关元件的电压控制变速电动机开发两种动态制动方案。首先,建议通过在一个电源电压的半个周期中抑制向三端双向可控硅开关元件的触发脉冲,从而将AC电压控制器作为半波控制的AC-DC转换器运行,从而可以影响动态制动。发现这种尝试失败了,并且在半波控制的转换器操作期间,电动机以非常低的速度运行。研究了故障的原因,然后提出了两个能够影响以半波控制器供电的电动机的动态制动的电力电子电路。第一种方法采用跨电动机端子的受控续流,第二种方法使用断开辅助绕组。两种方法均显示为实现电机的动态制动。给出了仿真和测量结果,以显示两个电路的有效性。

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