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Compound Velocity Synchronizing Control Strategy for Electro-Hydraulic Load Simulator and Its Engineering Application

机译:电液负载模拟器的复合速度同步控制策略及其工程应用

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An electro-hydraulic load simulator (EHLS) is a typical case of torque systems with strong external disturbances from hydraulic motion systems. A new velocity synchronizing compensation strategy is proposed in this paper to eliminate motion disturbances, based on theoretical and experimental analysis of a structure invariance method and traditional velocity synchronizing compensation controller (TVSM). This strategy only uses the servo-valve's control signal of motion system and torque feedback of torque system, which could avoid the requirement on the velocity and acceleration signal in the structure invariance method, and effectively achieve a more accurate velocity synchronizing compensation in large loading conditions than a TVSM. In order to facilitate the implementation of this strategy in engineering cases, the selection rules for compensation parameters are proposed. It does not rely on any accurate information of structure parameters. This paper presents the comparison data of an EHLS with various typical operating conditions using three controllers, i.e., closed loop proportional integral derivative (PID) controller, TVSM, and the proposed improved velocity synchronizing controller. Experiments are conducted to confirm that the new strategy performs well against motion disturbances. It is more effective to improve the tracking accuracy and is a more appropriate choice for engineering applications.
机译:电动液压负载模拟器(EHLS)是扭矩系统的典型情况,液压系统的外部干扰强烈。基于结构不变性方法和传统速度同步补偿控制器(TVSM)的理论和实验分析,提出了一种消除运动干扰的新型速度同步补偿策略。该策略仅利用运动系统的伺服阀控制信号和转矩系统的转矩反馈,可以避免结构不变法对速度和加速度信号的要求,有效地实现了大载荷条件下更精确的速度同步补偿。比TVSM。为了便于在工程案例中实施该策略,提出了补偿参数的选择规则。它不依赖于任何结构参数的准确信息。本文介绍了使用三个控制器(即闭环比例积分微分(PID)控制器,TVSM和拟议的改进型速度同步控制器)在各种典型工况下的EHLS的比较数据。进行实验以确认新策略在抵抗运动干扰方面表现良好。提高跟踪精度更有效,并且是工程应用的更合适的选择。

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