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Investigation of induction motor performance under high negative slip condition for braking

机译:高负滑差制动条件下感应电动机性能研究

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Investigation on the performance of an induction motor operating with a large negative slip is carried out. It is shown that an operating point in the negative slip region exists at which point all the regenerated energy is consumed as copper loss and core loss in the rotor and stator. This operating point has been experimentally determined for the test motor and load combination and is shown to occur at a slip of about -0.47. The operating point at which no power is returned to the source can be used in voltage source inverter driven induction motors for braking applications to bring large inertia loads to a quick stop without the need for braking resistor units. The stopping times achievable depend on the inverter rating, motor rating, and the inertia of the load. Control of current through the motor during the process of negative slip operation is achieved by modifying the simple V/F pattern. Operating temperature of the motor is seen to play an important role in establishing the point at which no power is returned to the source. Experimental results showing the static performance, temperature effect, and application of proposed method to stopping a large inertia load are presented.
机译:对负滑差较大的感应电动机的性能进行了研究。可以看出,在负滑移区域中存在一个工作点,在该点上,所有再生能量都作为转子和定子中的铜损和铁芯损而被消耗掉。该工作点已经通过实验确定了测试电动机和负载组合的工作点,并显示在大约-0.47的转差处发生。电压源逆变器驱动的感应电动机可在制动应用中使用不返回电源的工作点,从而无需制动电阻器单元即可将大惯性负载快速停止。可以达到的停止时间取决于变频器的额定值,电动机的额定值以及负载的惯量。通过修改简单的V / F模式,可以在负滑差运行过程中控制通过电动机的电流。可以看出,电动机的工作温度在确定没有电源返回电源的点上起着重要作用。给出了显示静态性能,温度效应的实验结果,以及所提出的方法在停止大惯性载荷方面的应用。

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