首页> 外文会议>JSME Motion and Vibration Conference;ASME Annual Dynamic Systems and Control Division Conference >DISPLACEMENT CONTROL OF HYDRAULIC ACTUATORS USING A PASSIVITY BASED NONLINEAR CONTROLLER
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DISPLACEMENT CONTROL OF HYDRAULIC ACTUATORS USING A PASSIVITY BASED NONLINEAR CONTROLLER

机译:基于被动性的非线性控制器对液压执行器的位移控制

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To increase the efficiency of hydraulic systems by eliminating valve throttling losses, a direct displacement open circuit is proposed to control a single rod hydraulic actuator. The circuit provides three control inputs, including the displacement of a variable displacement pump, the opening area of a proportional valve, and the position of a directional valve. Pump control has a low bandwidth, but the efficiency is high due to the lack of throttling losses. Valve control has a high bandwidth, but the throttling loss is high. A novel approach has been proposed to distribute the control efforts between the pump and the proportional valve considering both control bandwidth balancing and throttling loss reduction. The proportional valve will follow a high frequency opening profile, while the nominal valve opening is large, and the pump output flow will follow a low frequency demand. Experimental results validate the effectiveness of the proposed approach.
机译:为了通过消除阀节流损失来提高液压系统的效率,提出了一种直接排量开路来控制单杆液压执行器。该电路提供了三个控制输入,包括可变排量泵的排量,比例阀的开度面积和方向阀的位置。泵控制的带宽较低,但是由于没有节流损失,因此效率很高。阀门控制具有较高的带宽,但节流损失较高。考虑到控制带宽平衡和节流损失的减少,已经提出了一种新颖的方法来在泵和比例阀之间分配控制力。比例阀将遵循高频开度曲线,而标称阀开度较大,并且泵的输出流量将遵循低频需求。实验结果验证了该方法的有效性。

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