首页> 外文会议>Proceedings of the Seventh international conference on fluid power transmission and control >Simulation and analysis of a voice coil motor direct drive valve ( VCM-DDV) based on a co-simulation environment by AMESim and simulink
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Simulation and analysis of a voice coil motor direct drive valve ( VCM-DDV) based on a co-simulation environment by AMESim and simulink

机译:基于AMESim和Simulink共同仿真环境的音圈电机直驱阀(VCM-DDV)的仿真和分析

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High bandwidth, high flow rate electro-hydraulic servo valves typically have two or more stages. Multi-stage valves (i.e. nozzle flapper valves) are expensive, and require meticulously clean fluid. Single stage spool valves are cheaper and more reliable; however, they are not suitable for high bandwidth applications due to the limitation of the stroking actuator. With the development of electric linear actuators the single stage servo valves also called DDV (Direct Drive Valve) have seen rapid development. In this research, a new kind of valve called a "Voice Coil Motor Direct Drive Valve" (VCMDDV) ' has been investigated by some of the authors. In this paper the basic structure of the VCM-DDV is presented, and some methods for reducing the flow forces are discussed. A non-linear model of the DDVVCM is simulated using a co-simulation approach involving AMESim?, the power bond graph (PBG) and MatLab/Simulink? Using this co-simulation approach, factors such as damping length, and VCM current-force coefficient on the performance of the valve are discussed.
机译:高带宽,高流量的电动液压伺服阀通常具有两级或更多级。多级阀(即喷嘴挡板阀)价格昂贵,并且需要精心清洁的流体。单级滑阀更便宜,更可靠;但是,由于行程执行器的限制,它们不适用于高带宽应用。随着电动线性致动器的发展,单级伺服阀(也称为DDV(直接驱动阀))得到了快速发展。在这项研究中,一些作者研究了一种新型阀,称为“音圈电机直接驱动阀”(VCMDDV)。本文介绍了VCM-DDV的基本结构,并讨论了减小流动力的一些方法。 DDVVCM的非线性模型是使用涉及AMESim ?、电源键图(PBG)和MatLab / Simulink?的协同仿真方法进行仿真的。使用这种共同仿真方法,讨论了诸如阻尼长度和VCM电流-力系数等因素对阀门性能的影响。

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