Analogue on-site regulating system for magnetic suspension bearing

A magnetic suspension bearing and on-site debugging technology, which is applied to bearing components, shafts, bearings, instruments, etc., can solve the problems of on-site debugging system for magnetic suspension bearings, damage to cost-effective mechanical equipment, and panic in the heart, so as to improve safety and reliability sex, reduce psychological stress and panic, and reduce risk

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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Once the parameters of the control system are not well designed, instability will easily occur during on-site debugging, which may not only damage the extremely expensive mechanical equipment, but also cause great psychological pressure and panic to the on-site debugging technicians
Magnetic suspension bearings have gradually been widely used in industrial occasions at home and abroad, but there is no system for on-site debugging of magnetic suspension bearings.

Method used

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  • Analogue on-site regulating system for magnetic suspension bearing
  • Analogue on-site regulating system for magnetic suspension bearing
  • Analogue on-site regulating system for magnetic suspension bearing

Examples

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Embodiment Construction

[0020] Below in conjunction with accompanying drawing and embodiment the present invention will be further described:

[0021] Such as figure 1 , figure 2 As shown, the magnetic suspension bearing simulation on-site debugging system includes a sine and cosine signal generation circuit, a sine signal processing circuit, a cosine signal processing circuit, a controller and a power amplifier, wherein the sine and cosine signal generation circuit includes a single-chip microcomputer U1 and a direct digital synthesis chip U2 , U3, bistable flip-flop U4 and crystal oscillator U5, the model of microcontroller U1 is P89C58, the model of bistable flip-flop U4 is 74HC74, the model of direct digital synthesis chips U2 and U3 is AD9851; the FQ_UD terminal of microcontroller U1 Connected to the D terminal of the bistable trigger U4, the Q terminal of the bistable trigger U4 is connected to the FQ_UD terminals of the direct digital synthesis chips U2 and U3 at the same time, and the RESET...

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Abstract

This invention discloses an analog field debugging system for magnetic suspension bearing including a sine and a cosine signal generating circuit, a sine signal process circuit, a cosine signal process circuit, a controller and a power amplifier, in which, the sine and cosine signal generation circiuit includes a signle-chip processor, direct digital synthesized chips U2 and U3, a double-stable trigger and a crystal oscillator, both the sine signal process circuit and the cosine signal process circuit include two-stage low pass filter circuit and voltage amplitude regulation circuit, which can greatly increase the safety and reliability of field debugging of magnetic suspenwion bearings.

Description

1. Technical field [0001] The invention relates to a magnetic suspension bearing debugging system, in particular to a magnetic suspension bearing simulation field debugging system. 2. Background technology [0002] Magnetic suspension bearings are generally used in high-speed or ultra-high-speed occasions that cannot be met by mechanical bearings in industry. The performance of the control system directly determines the performance of magnetic suspension bearings. Once the parameters of the control system are not well designed, instability will easily occur during on-site debugging, which may not only damage the extremely expensive mechanical equipment, but also cause great psychological pressure and panic to the on-site debugging technicians. Magnetic suspension bearings have been gradually and widely used in industrial occasions at home and abroad, but there is no system for on-site debugging of magnetic suspension bearings. 3. Contents of the invention [0003] 1. Purp...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G12B5/00F16C33/04
Inventor 徐龙祥戴大海
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