|
Journal of Zhejiang University SCIENCE C
ISSN 1869-1951(Print), 1869-196x(Online), Monthly
2014 Vol.15 No.10 P.892-902
A differential control method for the proportional directional valve
Abstract: For the proportional directional valve controlled by two proportional solenoids, the normal control method (NCM) energizes only one solenoid at a time. The performance of the valve is greatly influenced by the nonlinearity of the proportional solenoid, such as dead zone and low force gain with a small current, and this effect cannot be eliminated by a simple dead-zone current compensation. To avoid this disadvantage, we propose the differential control method (DCM). By employing DCM, the controller outputs differential signals to simultaneously energize both solenoids of the proportional valve, and the operating point is found by analyzing the force output of the two solenoids to make a minimum variation of the current force gain. The comparisons of the valve response characteristics are made between NCM and DCM by nonlinear dynamic simulation and experiments. Simulation and experimental results show that by using DCM, the frequency response of the valve is greatly enhanced, especially when the input is small, which means that the dynamic characteristics of the proportional valve are improved.
Key words: Differential control method, Frequency response, Proportional directional valve, Spool displacement feedback
创新要点:在建立比例阀电磁铁非线性模型的基础上,提出了差动控制策略,建立差动控制器输出互成差动关系的两路控制信号,分别激励比例阀的左右两个比例电磁铁,以总体力增益恒定为优化目标选取最佳工作点,从而减小比例阀电磁铁的非线性,改善比例方向阀性能。
方法提亮:同时驱动比例方向阀的两个比例电磁铁,使两路控制信号满足差动关系,合理配置静态工作点使两路比例电磁铁的合力线性度最高,并通过阀芯位移反馈实现对阀芯位置的闭环控制。
重要结论:实验结果表明,差动控制算法能够有效改善比例阀电磁铁的非线性特性,提高比例方向阀阀心位移的控制精度与响应速度。
关键词组:
References:
Open peer comments: Debate/Discuss/Question/Opinion
<1>
DOI:
10.1631/jzus.C1400056
CLC number:
TP271.3
Download Full Text:
Downloaded:
3663
Download summary:
<Click Here>Downloaded:
2167Clicked:
8807
Cited:
2
On-line Access:
2024-08-27
Received:
2023-10-17
Revision Accepted:
2024-05-08
Crosschecked:
2014-09-17