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Efficient pump and meter-out control for electrohydraulic system with time-varying negative load

机译:负时变电动液压系统的高效泵送和节流控制

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In hydraulic systems under negative loads, counterbalance valves are widely employed, which introduce instability and sizable energy consumption. This article focuses on the electrohydraulic system with meter-out orifice and variable pump, which allows flexible control structure. The target is to reduce inlet pressure level as well as diminish oscillation caused by time-varying loads. An extended load observer is constructed to estimate the external load. Accordingly, a robust back-stepping controller with integral part and disturbance compensation is proposed to regulate the meter-out orifice, achieving velocity-oriented control. Also, a model-based pressure-oriented controller is developed to determine pump displacement. The target is set to 3 bar in this work, while the pressure losses in conventional systems are more than 12 bar. The stabilities of these two independent controllers are both proved by Lyapunov theory. Experiments focusing on energy consumption, load compensation, and velocity tracking are carried out verifying the controller effectiveness. Discussions of results illustrate that the whole proposed controller succeeds in velocity tracking and reducing energy consumption in the presence of time-varying negative load.
机译:在负负载的液压系统中,平衡阀被广泛使用,这会导致不稳定和大量的能耗。本文重点介绍具有节流孔和可变泵的电动液压系统,该系统具有灵活的控制结构。目标是降低进口压力水平,并减少由时变负载引起的振荡。构造了扩展的负载观察器以估计外部负载。因此,提出了一种鲁棒的具有整体部分和扰动补偿功能的反步控制器来调节节流孔,从而实现速度定向控制。此外,还开发了基于模型的压力导向控制器来确定泵排量。在这项工作中,目标设定为3 bar,而常规系统中的压力损失超过12 bar。李雅普诺夫理论证明了这两个独立控制器的稳定性。进行了针对能耗,负载补偿和速度跟踪的实验,以验证控制器的有效性。对结果的讨论表明,在存在时变负负载的情况下,所提出的整个控制器能够成功进行速度跟踪并降低能耗。

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