Description
For the fulfillment of electric motors advanced tests, it is advisable to acquire the Control and Data Acquisition System Software for Electrical Machines, “EM-SCADA”. This advanced software allows monitoring the waveforms for current, voltage, torque and speed to study in depth the electric machines.
EXERCISES AND GUIDED PRACTICES
GUIDED PRACTICAL EXERCISES INCLUDED IN THE MANUAL
Some practical possibilities with D.C. Independent Excitation Motor-Generator Kit (DCEMT-K1):
- Wiring of the DC independent excitation motor.
- Starting and speed and torque control with the speed controller.
- Braking test with the servomotor.
- Measurement of the armature current and resistance.
- Computation of the counter-electromotive force (CEMF).
- Computation of the electromagnetic power and losses of the DC independent excitation motor.
- Obtaining of Torque vs. Speed curve for the DC independent excitation motor.
- Overcurrent protection calibration and testing
Some practical possibilities with DC series excitation motorg-generator Kit (DCEMT-K2):
- Wiring of the DC series excitation motor.
- Starting and speed and torque control with the speed controller.
- Braking test with the servomotor.
- Measurement of the armature current and resistance.
- Computation of the counter-electromotive force (CEMF).
- Computation of the electromagnetic power and losses of the DC series excitation motor.
- Obtaining of Torque vs. Speed curve for the DC series excitation motor.
- Overcurrent protection calibration and testing.
Some practical possibilities with DC shunt excitation motor generator Kit (DCEMT-K3):
- Wiring of the DC shunt excitation motor.
- Starting and speed and torque control with the speed controller.
- Braking test with the servomotor.
- Measurement of the armature current and resistance.
- Computation of the counter-electromotive force (CEMF).
- Computation of the electromagnetic power and losses DC shunt excitation motor.
- Obtaining of Torque vs. Speed curve for the DC shunt excitation motor.
- Overcurrent protection calibration and testing.
Some practical possibilities with DC compound excitation motor-generator Kit (DCEMT-K4):
- Wiring of the DC compound excitation motor.
- Starting and speed and torque control with the speed controller.
- Braking test with the servomotor.
- Measurement of the armature current and resistance.
- Computation of the counter-electromotive force (CEMF).
- Computation of the electromagnetic power and losses of the DC compound excitation motor.
- Obtaining of Torque vs. Speed curve for the DC compound excitation motor.
- Overcurrent protection calibration and testing.
Some practical possibilities with DC shunt/series/compound excitation motor-generator Kit (DCEMT-K5):
- Desired wiring of the DC motor excitation, independent, series, shunt or compound.
- Starting and speed and torque control with the speed controller.
- Braking test with the servomotor.
- Use of the motor as a generator.
- Measurement of the armature current and resistance.
- Computation of the electromotive force (EMF).
- Computation of the electromagnetic power and losses of the DC generator.
- Obtaining of Torque vs. Speed curve for the DC generator.
- Overcurrent protection calibration and testing.
Practical exercises with the recommended Control and Data Acquisition System Software for Electrical Machines, with SCADA, “EM-SCADA”:
- Real time torque measurement.
- Real time speed measurement.
- Real time current and voltage RMS values.
- Real time current and voltage wave forms measurement.
- Electro dynamical study of the motor.
- Obtaining characteristic curves (torque-speed curve, torque current curve etc.).
- Obtaining the saved results.
- Manual and automatic braking test and real time monitoring of the result.
- Several other exercises can be done and designed by the user.
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