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Dynamic simulation of a position-controlled electrohydraulic system using EASY5

机译:易解定位控制电液系统的动态仿真

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A servovalve - controlled hydraulic motor - driven positioning system was built. The hydraulic system was modeled and simulated using EASY5 software which had predefined hydraulic components models in addition to the ability of defining new ones. EASY5 model made it possible to study the dynamic behavior of the system under varied conditions of entrained air, motor displacement, motor leakage, and mass changes. Different systems components were tested in order to have the required data needed to build the final model. Pump flow rate, motor leakage, servovalve leakage, and slide table friction were experimentally measured. The slide table dynamic model was proposed and the performance data was measured. Eigenvalue sensitivity analysis showed that fluid line between the hydraulic motor and the servovalve is the most influential factor on system stability. The results showed that using 0.1 in~3 displacement motor reduced total time although it increased time delay compared with the 0.15 in~3 and 0.3 in~3 displacement motors. On the other hand, using shorter conductor reduced the total time compared with the longer lines. Also, increasing tubing length increased the pressure in motor outlet port.
机译:建造了一种伺服阀控制液压电动机驱动定位系统。除了定义新产品的能力之外,使用Easy5软件进行建模和模拟液压系统,该软件具有预定的液压元件模型。 Easy5模型可以在夹带空气,电机位移,电机泄漏和质量变化的各种条件下研究系统的动态行为。测试了不同的系统组件,以便具有构建最终模型所需的所需数据。实验测量泵流量,电机泄漏,伺服泄漏和滑动台摩擦。提出了幻灯片表动态模型,并测量了性能数据。特征值敏感性分析表明,液压马达与伺服阀之间的流体线是系统稳定性最具影响力的因素。结果表明,使用0.1在〜3位移电动机中减少了总时间,尽管与〜3位〜3个位移电机中的0.15中的0.15相比增加了时间延迟。另一方面,与较长线相比,使用较短的导体降低总时间。而且,增加管道长度增加了电动机出口中的压力。

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