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Identification method and identification device for offline secondary channel

A secondary channel and identification method technology, applied in the field of improving the control effect of active vibration control, can solve the problems of low identification accuracy, large system impedance, signal noise interference, etc., and achieve the effect of high identification accuracy

Active Publication Date: 2017-08-29
苏州东菱智能减振降噪技术有限公司
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  • Summary
  • Abstract
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  • Claims
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AI Technical Summary

Benefits of technology

This technology uses an on-off process for measuring errors that affecting the primary channel's performance. By calculating this data over time, it becomes possible to identify which parts are causing problems or even prevent them from happening altogether.

Problems solved by technology

Technological Problem addressed in this patents relates to improving the performance of electronic devices like fans or screens when subjected to severe vibrational disturbances during their use. These vibrative effects may cause damage if they occur too frequently without being detected properly. To address this problem, there have developed several methods including passively vibration isolated systems and active controlled vibration compensated systems.

Method used

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  • Identification method and identification device for offline secondary channel
  • Identification method and identification device for offline secondary channel
  • Identification method and identification device for offline secondary channel

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Embodiment Construction

[0033] The specific embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and embodiments. The following is a preferred embodiment for illustrating the present invention, but not for limiting the scope of the present invention.

[0034] see Figure 2 to Figure 4 , as shown in the legend: an offline secondary channel identification device, including:

[0035] - Pneumatic impact hammer 10 for generating impact force;

[0036] - a controlled machine 20 for vibrating under the excitation of the pneumatic impact hammer 10;

[0037] - a force sensor 30 for measuring the force signal function of the impact force;

[0038] - an error sensor 40 for measuring the acceleration signal function of the error response point of the controlled machine 20;

[0039] - a noise source 50, comprising a controller 51, a filter 52 and a power amplifier 53 which are sequentially output connected, for generating a white noise sign...

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Abstract

The invention discloses an identification method for an offline secondary channel. The method comprises the steps of applying an impact force by means of a pneumatic impact hammer at an actuator mounting position; simultaneously measuring a force signal of the impact hammer and an acceleration signal of an error sensor, and identifying the dynamic characteristic of the structure by means of the two signals; generating a wideband white noise signal by means of a controller, driving an actuator by means of a filter and a power amplifier, and calculating the dynamic characteristic of the actuator through acquiring the acceleration signal on an actuator mover and the white noise signal transmitted from the controller; synthesizing the calculated dynamic characteristic of the controlled structure and the dynamic characteristic of the actuator for obtaining a weight coefficient of a secondary channel; and according to a control requirement, performing resampling on the calculated secondary channel weight coefficient, thereby obtaining the total system of the secondary channel. The signal of a controlled machine error response point is not affected by the noise signal which is generated by the controller, thereby realizing relatively high identification precision of the secondary channel. The invention further discloses an identification device for the offline secondary channel.

Description

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Claims

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Application Information

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Owner 苏州东菱智能减振降噪技术有限公司
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