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Digital valve technology applied to the control of a hydraulic valve actuator

机译:数字阀技术应用于液压阀门执行器的控制

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The use of electrohydraulic actuators in engine control applications has the potential to improve engine performance and fuel economy. Digital latching valves open and shut extremely quickly. Furthermore, by using residual magnetism, the valves remain latched in the open or closed position and only use energy when transitioning between positions. In this paper, the control issues involved with using latching valves for closed-loop position control of a piston- cylinder actuator are examined. The valve design, system models and alternative controller designs are presented. The first control design is based on minimizing a cost function measure of errors and control energy usage, which quantifies a trade-off between tracking accuracy, resolution, and control energy usage. The second design, which is called inner sample modulation of the valve, is based on calculating the appropriate control action as some fraction of the sampling time. Experimental data showing trajectory tracking and control commands is included. The data supports the conclusion that digital latching valves offer a competitive actuation choice in terms of control performance and control energy usage.
机译:在发动机控制应用中使用电动液压执行器具有改善发动机性能和燃料经济性的可能性。数字锁定阀打开和关闭极快。此外,通过使用残留磁性,阀门保持在打开或关闭位置锁定,并且在在位置之间转换时仅使用能量。在本文中,研究了使用用于使用锁定阀进行活塞致动器的闭环位置控制所涉及的控制问题。介绍了阀门设计,系统模型和替代控制器设计。第一控制设计基于最小化误差和控制能量使用的成本函数测量,这量化了跟踪精度,分辨率和控制能量使用之间的权衡。被称为阀门内部样品调制的第二种设计是基于计算适当的控制动作作为采样时间的一小部分。包括轨迹跟踪和控制命令的实验数据。数据支持数字锁定阀在控制性能和控制能源使用方面提供竞争激发选择。

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