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电动阀门转角时间关系及其定位补偿研究
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作者 王博 王亚丽 任浩 《机电工程》 CAS 北大核心 2022年第11期1551-1558,共8页
增量式电动阀门执行器的转角增量与控制脉冲时间长度存在的非线性问题,难以满足终端的执行定位精度指标,针对这一问题,对阀门转角与时间的关系进行了研究,开发了能够实现定位补偿的阀门控制系统。首先,对增量式电动阀门驱动原理进行了分... 增量式电动阀门执行器的转角增量与控制脉冲时间长度存在的非线性问题,难以满足终端的执行定位精度指标,针对这一问题,对阀门转角与时间的关系进行了研究,开发了能够实现定位补偿的阀门控制系统。首先,对增量式电动阀门驱动原理进行了分析,建立了MATLAB仿真模型;然后,开发了阀门定位精度测试装置,采用高精度光电编码器精确测量了电动阀门执行器的实际转角,通过实验得出了转角与控制信号时间长度的关系,并拟合出了开度增量与控制脉冲时间长度的函数表达式;通过改变控制信号脉冲时间长度的方式,提出了一种能够实现定位补偿的阀门控制策略;最后,搭建了实验平台,对仿真结果进行了验证,并开发了能够实现定位补偿的阀门控制系统。研究结果表明:当控制脉冲时间长度小于1 s时,补偿后的转角误差率由原来的53%降低到24%,定位精度提高2倍以上;该研究结果可以为电动阀门执行器的精确定位控制提供参考。 展开更多
关键词 液压控制 增量式电动阀门 阀门控制策略 阀门定位精度 阀门执行器 转角特性测量 定位补偿
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Model-based trajectory tracking control for an electrohydraulic lifting system with valve compensation strategy 被引量:3
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作者 周华 侯交义 +1 位作者 赵勇刚 陈英龙 《Journal of Central South University》 SCIE EI CAS 2012年第11期3110-3117,共8页
The natural frequency of the electrohydraulic system in mobile machinery is always very low,which brings difficulties to the controller design.To improve the tracking performance of the hydraulic system,mathematical m... The natural frequency of the electrohydraulic system in mobile machinery is always very low,which brings difficulties to the controller design.To improve the tracking performance of the hydraulic system,mathematical modeling of the electrohydraulic lifting system and the rubber hose was accomplished according to an electrohydraulic lifting test rig built in the laboratory.Then,valve compensation strategy,including spool opening compensation (SOC) and dead zone compensation (DZC),was designed based on the flow-pressure characteristic of a closed-centered proportional valve.Comparative experiments on point-to-point trajectory tracking between a proportional controller with the proposed compensations and a traditional PI controller were conducted.Experiment results show that the maximal absolute values of the tracking error are reduced from 0.039 m to 0.019 m for the slow point-to-point motion trajectory and from 0.085 m to 0.054 m for the fast point-to-point motion trajectory with the proposed compensations.Moreover,tracking error of the proposed controller was analyzed and corresponding suggestions to reduce the tracking error were put forward. 展开更多
关键词 electrohydraulic system trajectory tracking control valve compensation dead zone compensation mobile machinery
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