引用本文: | 刘军龙,姜继海,欧进萍,张春巍,刘庆和.直驱容积控制电液伺服系统模型与动态特性[J].哈尔滨工业大学学报,2011,43(7):61.DOI:10.11918/j.issn.0367-6234.2011.07.013 |
| LIU Jun-long,JIANG Ji-hai,OU Jin-ping,ZHANG Chun-wei,LIU Qing-he.Theoretical model and dynamic performance of direct drive volume control electro-hydraulic servo system[J].Journal of Harbin Institute of Technology,2011,43(7):61.DOI:10.11918/j.issn.0367-6234.2011.07.013 |
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摘要: |
为了研究直接驱动容积控制电液伺服系统动态响应特性不高的原因,分别建立直驱容控电液驱动系统的电机控制、液压动力机构和液压执行机构等子系统的力学模型,并建立直驱容控电液伺服作动器的数学模型.利用MATLAB软件对系统主要部件进行数值仿真分析.结果表明,系统动态特性不高的根本原因是泵控动力机构的动态特性不高.对系统各组成部件的动态特性进行了分析,并提出改进系统性能的措施与策略. |
关键词: 直驱容控电液伺服系统 动态特性 电机控制 液压动力机构 数值仿真 |
DOI:10.11918/j.issn.0367-6234.2011.07.013 |
分类号:TM921.541 |
基金项目:国家基础研究发展规划资助项目(2007CB714204);国家科技支撑计划项目(2006BAJ03B06) |
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Theoretical model and dynamic performance of direct drive volume control electro-hydraulic servo system |
LIU Jun-long1, JIANG Ji-hai1, OU Jin-ping2,3, ZHANG Chun-wei2, LIU Qing-he1
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1.School of Mechanical Engineering,Harbin Institute of Technology,150080 Harbin,China;2.School of Civil and Hydraulic Engineering,Dalian University of Technology,116024 Dalian,China;3.School of Civil Engineering,Harbin Institute of Technology,150090 Harbin,China)
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Abstract: |
To study the reason of low dynamic response characteristics of direct drive volume control electro-hydraulic servo system and to widen the application of the system,mechanical models of motor control,hydraulic power mechanism,hydraulic actuator and other sub-structures of DDVC electro-hydraulic servo system are established.Furthermore a mathematical model of direct drive volume control electro-hydraulic servo actuator is set up,and based on MATLAB software,a relatively comprehensive numerical simulation analysis on main parts of the system is carried out.Simulation results show that the basic reason of low system dynamic characteristics is due to the low dynamic characteristics of pump-control power mechanism.The dynamic characteristics of each component part of the system are summarized so that the measures and strategies to improve the system performance are brought forward. |
Key words: direct drive volume control electro-hydraulic servo system dynamic characteristics motor control hydraulic power mechanism numerical simulation |