Low-energy-consumption high-pollution-resistance ultrahigh-frequency-response digital hydraulic servo control system and control method

A servo control system, digital hydraulic technology, applied in the direction of fluid pressure actuation system components, servo motors, servo motor components, etc., can solve the complex structure of hydraulic servo control system, the control is susceptible to environmental interference, operation and maintenance requirements and high costs problem, to achieve the effect of good dynamic and static characteristics, small inertial force and low price

Active Publication Date: 2022-01-14
CHINA NAT HEAVY MACHINERY RES INSTCO
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  • Application Information

AI Technical Summary

Problems solved by technology

Among them, the servo valve adopts the moving iron type or the moving coil type, which has good control characteristics, but the structure is complex, and the spool valve sleeve of the slide valve type is sensitive to the cleanliness of the oil, the system failure rate is high, the energy consumption is large, and the later operation and maintenance requirements And the cost is high; the control performance of the proportional valve is second, and the structure is moderate compared with the servo valve, and the sensitivity of the proportional valve to the oil is greatly reduced, the system is more reliable, but the maintenance cost is higher
Whether it is a servo valve or a proportional valve, an analog control method is required to control the position and force, so the control is easily disturbed by the environment, resulting in unreliable system operation.
The above factors have caused technical problems such as complex structure, high power consumption and low reliability of the existing hydraulic servo control system.

Method used

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  • Low-energy-consumption high-pollution-resistance ultrahigh-frequency-response digital hydraulic servo control system and control method
  • Low-energy-consumption high-pollution-resistance ultrahigh-frequency-response digital hydraulic servo control system and control method
  • Low-energy-consumption high-pollution-resistance ultrahigh-frequency-response digital hydraulic servo control system and control method

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Embodiment Construction

[0029] The present invention will be further described below in conjunction with drawings and embodiments.

[0030] Such as figure 1 , figure 2 , image 3 , Figure 4 , Figure 5 As shown, the present invention is a digital hydraulic servo control system with low energy consumption, high pollution resistance and ultra-high frequency response, including a first digital hydraulic switch valve 2101, a second digital hydraulic switch valve 2102, a third digital hydraulic switch valve 2103, and a fourth digital hydraulic switch valve. Hydraulic switching valve 2104, hydraulic cylinder 24, displacement sensor 23, first pressure sensor 2201, second pressure sensor 2202 and digital controller 25, displacement sensor 23 is arranged on the end of hydraulic cylinder 24, and digital controller 25 comprises the connected comparator Device 35 and digital signal generator 36;

[0031] The main pressure oil P0 is respectively connected with the main pressure oil port P of the first digi...

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Abstract

The invention discloses a low-energy-consumption high-pollution-resistance ultrahigh-frequency-response digital hydraulic servo control system and a control method. The system comprises digital hydraulic switch valves, a hydraulic cylinder, a displacement sensor, pressure sensors and a digital controller, main pressure oil is respectively connected with main pressure oil ports of a first digital hydraulic switch valve and a second digital hydraulic switch valve, main return oil is respectively connected with secondary pressure oil ports of a third digital hydraulic switch valve and a fourth digital hydraulic switch valve, a secondary pressure oil port of the first digital hydraulic switch valve and a main pressure oil port of the third digital hydraulic switch valve are respectively connected with a hydraulic cylinder piston cavity oil port, a secondary pressure oil port of the second digital hydraulic switch valve and a main pressure oil port of the fourth digital hydraulic switch valve are respectively connected with a hydraulic cylinder rod cavity oil port, the displacement sensor, a first pressure sensor and a second pressure sensor are respectively connected with a comparator, and a signal generator is respectively connected with magnet exciting coils of the four digital hydraulic switch valves. According to the system, ultrahigh-frequency fluid pulse signals are directly converted, and therefore accurate control of hydraulic servo is realized.

Description

technical field [0001] The invention relates to a digital hydraulic servo control system and control method, in particular to a digital hydraulic servo control system and control method with low energy consumption, high pollution resistance and ultra-high frequency response characteristics. Background technique [0002] The position and force servo control in the existing hydraulic field usually adopts a servo valve or a proportional valve. Among them, the servo valve adopts the moving iron type or the moving coil type, which has good control characteristics, but the structure is complex, and the spool valve sleeve of the slide valve type is sensitive to the cleanliness of the oil, the system failure rate is high, the energy consumption is large, and the later operation and maintenance requirements And the cost is high; the control performance of the proportional valve is second, and the structure is moderate compared with the servo valve, and the sensitivity of the proporti...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F15B11/08F15B13/04F15B15/28F15B21/02
CPCF15B11/08F15B13/04F15B15/2838F15B21/02
Inventor 丘铭军洪军郭星良宁博陈国防张伟李向辉张永锋解通护郭佳雷丛卉赵春丽
Owner CHINA NAT HEAVY MACHINERY RES INSTCO
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