锥筒式减压阀的观测器设计

Ganga P. Jayaraman, Stephen V. Lunzman
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引用次数: 2

摘要

本文提出了一种可用于改善电磁减压阀响应和稳定性特性的观测器设计。大多数减压阀具有很小的固有阻尼,并且由于在打开过程中流体速度的影响,可能会表现出不稳定的行为。一种解决方案是采用闭环控制策略来改善阀门的动态特性。在这里,螺线管电流、启爆器位置、启爆器速度和控制压力是反馈信号,用于增加稳定裕度和响应时间。传感器的成本和与求导相关的问题使得直接测量不可行。我们建议仅从阀门控制压力和电磁阀电流的测量中获得阀瓣位置和阀瓣速度的估计。这是使用状态观测器来完成的,该观测器估计了弹柱位置和弹柱速度,而不计算导数。然后,这些估计可用于设计满足阀门瞬态响应规范的反馈控制器。
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An observer design for a poppet type pressure reducing valve
This paper presents an observer design that may be used to improve the response and stability characteristics of a solenoid operated pressure-reducing valve. Most pressure-reducing valves have very little inherent damping, and can potentially exhibit unstable behavior due to fluid velocity effects during the opening of the poppet. One solution is to improve the dynamic characteristics of the valve by using a closed-loop control strategy. Here, the solenoid current, poppet position, the poppet velocity and the control pressure are feedback signals, used to increase the stability margin and the response time. The cost of the sensors and problems associated with taking derivatives make direct measurement infeasible. We propose to obtain estimates of the poppet position and poppet velocity from only measurements of the valve control pressure and the solenoid current. This is done using a state observer that estimates the poppet position and the poppet velocity without calculating derivatives. These estimates may then be used in a feedback controller that is designed to meet the valve transient response specifications.
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