Abstract
Variable Reluctance Motors (VRM) have great advantages for applications in the most diverse areasof the industry and equipment, due to its versatility, robustness, stability and the possibility of precisecontrol of rotation, power and torque. In view of these advantages, it was decided to develop andsimulate this type of motor for the on-screen prototype, which is intended for the calibration ofgravimeters, intended for the detection of gravitational waves through the effect of these waves onrotating objects in ultra-high rotations of the order of 500,000 rpm. The proposed device requiresa 1: 10,000 rpm error control, which will be possible due to the stability characteristics of the MRV.Due to the extremely low permissible vibration, the system uses magnetic bearings of the Lenz typein the rotor, with neodymium magnets interacting with the aluminum shaft, ensuring low friction andvibration. All of these aspects can be simulated using Matlab / Simulink, allowing a MRV performanceperspective on the prototype. The robustness of the SRM coupled with the advances observedin todays microelectronics and power electronics are key to success in screen design and futuredetection of gravitational waves.
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