Model following control-based vibration suppression method for alternating current servo motor

An AC servo motor, vibration suppression technology, applied in the control of generators, control of electromechanical brakes, control of electromechanical transmissions, etc., can solve the problems of complex adaptive law, difficult implementation, weakened system anti-noise ability, etc., to improve system response performance, improved speed responsiveness, and the effect of strong anti-noise capability

Active Publication Date: 2016-03-23
NANJING ESTUN AUTOMATION CO LTD
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  • Abstract
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  • Claims
  • Application Information

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Problems solved by technology

[0005] h ∞ Robust control, fuzzy neural network control, genetic algorithm, model predictive control and other intelligent control algorithms do not depend or do not completely depend on the mathematical model of the controlled object, which can overcome the influence of unfavorable factors such as uncertainty and nonlinearity of the servo system, Effectively realize vibration suppression, but there are shortcomings of complex algorithms, difficult implementation, and difficult determination of control parameters
[0006] The patent document "Adaptive Servo Controller Based on Model Tracking" (application number: 201010190932.9) discloses an adaptive servo control algorithm based on model tracking control, which is a parameter adaptive control system, and the adaptive adjustment is the control It has good adaptability to the disturbance of system inertia, load and motor parameters, but its adaptive law is complex and requires many parameters to be adjusted, and a differential link is introduced in the algorithm, which weakens the system's anti-noise ability
[0007] The patent document "A Method for Parameter Identification of Permanent Magnet Synchronous Motors" (Application No.: 201310573844.0) discloses a speed sensorless control method based on a cascaded model reference adaptive algorithm. Adaptive identification can effectively weaken the influence of motor parameter changes on the speed estimation. It mainly studies the improvement of the low-speed performance of the motor by this method, but does not analyze its performance when used to suppress system vibration, and because there are two models Refer to the adaptive algorithm module, the implementation is more complicated

Method used

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  • Model following control-based vibration suppression method for alternating current servo motor
  • Model following control-based vibration suppression method for alternating current servo motor
  • Model following control-based vibration suppression method for alternating current servo motor

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Embodiment

[0030]Embodiment: A general AC servo system uses a permanent magnet synchronous motor as an actuator and is a three-loop control system, that is, there are three control loops of position loop, speed loop and current loop. The present invention does not involve position loop control. For simplicity, In this embodiment, the position loop is omitted, and only the speed loop and the current loop are kept to form a common permanent magnet synchronous motor vector control system. Such as figure 1 as shown,

[0031] 1) The mechanical angle that the permanent magnet synchronous motor 1 has rotated is obtained through the detection of the position sensor 2, and then multiplied by the number of pole pairs of the motor to obtain the electrical angle θ of the motor, and the electrical angle θ is obtained through the differential processing of the rotational speed calculation module 3 to obtain the feedback rotational speed ω ;

[0032] 2) Feedback speed ω and pre-set given speed ω * F...

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Abstract

The invention discloses a model following control-based vibration suppression method for an alternating current servo motor. According to the method, a controlled quantity of a system is input into an ideal control module formed by a model reference adaptive algorithm; an output of the ideal model is supposed to be equal to an actual output; when an actual system is disturbed by the outside, the actual system follows the ideal model and makes a response to the disturbance; and the calculated controlled quantity for counteracting the disturbance is added to the controlled quality of the actual system, so that the targets of stabilizing the system and eliminating the disturbance are achieved. The model following control-based vibration suppression method is essentially a disturbance observer method; compared with a common disturbance observer, a differentiation element does not exist; the model following control-based vibration suppression method is high in noise immunity and simple to achieve; mechanical vibration under a flexible load and a rigid load at different frequencies can be effectively suppressed; and the speed responsiveness of the motor is improved.

Description

technical field [0001] The invention relates to a vibration suppression method for a motor, in particular to a vibration suppression method for an AC servo motor. Background technique [0002] With the increasing application of AC servo systems, various fields have put forward higher requirements for its responsiveness, positioning time and positioning accuracy. Generally, the responsiveness of the servo is improved by increasing the gain of the position loop and the speed loop, and the positioning time is shortened, but high gain often causes the system to generate greater mechanical vibration, especially in systems with flexible connections, the vibration phenomenon is more serious. At present, the main vibration suppression methods include filter method, observer method, robust control and intelligent control. [0003] Among the many methods of vibration suppression through filters, the most representative is the adaptive notch filter, which obtains the resonance point o...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02P21/05H02P21/13H02P21/18H02P21/22
CPCH02P21/05H02P21/13
Inventor 宋路程齐丹丹孙园园吴波
Owner NANJING ESTUN AUTOMATION CO LTD
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