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Magnetic Levitation Demo Control System
简介:The frictionless electromagnetic control systemThe Magnetic Levitation System (MLS) is a nonlinear, open-loop, unstable time varying frictionless dynamical system. The basic principle of MLS operation is to apply the voltage to an electromagnet to keep a ferromagnetic sphere levitated. Moreover, the sphere can follow a desired position value varying in time. The coil current is measured to explore...
Brand
Made In
Modle PXF0057
Disctount
PassionTech Ord OrderNum Product Name Price RMB Brand  
PXO_3849Magnetic Levitation (MLS0201)磁悬浮系统(MLS0201)58387~64533inteco
PXO_3850Magnetic Levitation (MLS0202)磁悬浮系统(MLS0202)64486~71274inteco
PXO_9526PX_GG_CF磁浮系统25460~28140RobLab
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The frictionless electromagnetic control system

The Magnetic Levitation System (MLS) is a nonlinear, open-loop, unstable time varying frictionless dynamical system. The basic principle of MLS operation is to apply the voltage to an electromagnet to keep a ferromagnetic sphere levitated. Moreover, the sphere can follow a desired position value varying in time. The coil current is measured to explore identification and multi loop or nonlinear control strategies. To levitate the sphere a real-time controller is required. The equilibrium stage of two forces (the gravitational and electromagnetic) is maintained by the controller to keep the sphere in a desired distance from the magnet. The system is fully integrated with MATLAB/Simulink and operates in the real-time in MS Windows. In the case of two electromagnets the lower one can be used for external excitation or as a contraction unit. This feature extends the MLS application and is useful in robust controllers design. The PC equipped with the RT-DAC/PCI I/O board communicates with the power interface. The user can create his own controller in a fast and easy way. Another MLS variant is shown on the left. Instead of the infrared position sensoring the magnetic flux is measured.

 

 

 

 

magnetic

 



 

Hardware:
- electromagnet
- ferromagnetic sphere- position sensor
- current sensor
- power interface
- RTDAC/PCI I/O board with a logic stored in the
XILINX chip

Dimensions: 450x380x530 mm (right one)
235x380x530 mm (left one)


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