For a 18600W 2400rpm DC motor, the following values are given: Ra=0.089 Q (value at room temperature (250C)), La = 0.00144 H, KT = 0.85 Nm / A and KV = 0.851 V / (rad / s)), (In calculations Use the hot resistance values at 1000C.) (Take the rated field winding losses as Wf = 210W.) f the motor speed is reduced to 50% of the rated speed (1200rpm), if the reduction to 50% of the motor speed is achieved by connecting a series resistor (RS) to the inductor, find the serial resistance value, which should be added at the rated inductor voltage, the inductive current, the motor efficiency and the motor speed at no load. When calculating the efficiency, include the losses in RS into the calculations. Rs Ω %3D I A Eff- % ONL- rpm

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For a 18600W 2400rpm DC motor, the following values are given: Ra = 0.089 2 (value at room temperature
(250C)), La = 0.00144 H, KT = 0.85 Nm / A and KV = 0.851 V/ (rad / s)), (In calculations Use the hot resistance
values at 1000C.) (Take the rated field winding losses as Wf= 210W.)
If the motor speed is reduced to 50% of the rated speed (1200rpm), if the reduction to 50% of
the motor speed is achieved by connecting a series resistor (RS) to the inductor, find the serial
resistance value, which should be added at the rated inductor voltage, the inductive current,
the motor efficiency and the motor speed at no load. When calculating the efficiency, include
the losses in RS into the calculations.
Rs
Ω
I
A
Eff
ONL
rpm
Transcribed Image Text:For a 18600W 2400rpm DC motor, the following values are given: Ra = 0.089 2 (value at room temperature (250C)), La = 0.00144 H, KT = 0.85 Nm / A and KV = 0.851 V/ (rad / s)), (In calculations Use the hot resistance values at 1000C.) (Take the rated field winding losses as Wf= 210W.) If the motor speed is reduced to 50% of the rated speed (1200rpm), if the reduction to 50% of the motor speed is achieved by connecting a series resistor (RS) to the inductor, find the serial resistance value, which should be added at the rated inductor voltage, the inductive current, the motor efficiency and the motor speed at no load. When calculating the efficiency, include the losses in RS into the calculations. Rs Ω I A Eff ONL rpm
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