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ANALYSIS CONTROL OF A SELF-CONTAINED HYDRAULIC WINCH DRIVE

机译:自紧式液压绞车的分析与控制

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摘要

This paper is considering the analysis and control of a self-contained hydraulic winch drive. Winch drives are used in various industries, and especially in offshore and marine applications such as fishing vessels, active heave compensation applications, cranes, oil- and gas drilling rigs, vessels for wind turbine installation and so forth. When high loads are present, such winches are typically actuated by use of hydraulics, and a main disadvantage of hydraulic actuation compared to electrical actuation is the potentially large installation space required due to the hydraulic power unit. In this paper the analysis of- and control design for a self-contained hydraulic winch drive are considered. The drive includes a single supply pump, fixed displacement motor, flow control valve, a boot-strap reservoir and integrated boost-flow functionality. Emphasis is placed on the analysis of the highly coupled dynamics, an approach to decouple the dynamics and a robust control structure able to handle various types of loads aided by model reference generation. The motion performance and robustness properties are demonstrated through simulation results, when the system is subjected to a strongly varying external load and motion reference from an offshore wind turbine blade installation system.
机译:本文正在考虑对独立的液压绞车驱动器进行分析和控制。绞盘驱动器用于各种行业,尤其​​是在海上和海洋应用中,例如渔船,主动升沉补偿应用,起重机,油气钻机,用于风力涡轮机安装的船只等。当存在高负载时,这种绞盘通常通过使用液压装置来致动,并且与电动致动相比,液压致动的主要缺点是由于液压动力单元而可能需要大的安装空间。本文考虑了独立式液压绞车驱动器的分析和控制设计。该驱动器包括一个单供油泵,一个固定排量的电动机,流量控制阀,一个引导油箱和集成的增压流量功能。重点放在对高度耦合动力学的分析,一种解耦动力学的方法以及鲁棒的控制结构上,该结构能够处理由模型参考生成辅助的各种类型的负载。当系统经受来自海上风力涡轮机叶片安装系统的强烈变化的外部负载和运动参考时,通过仿真结果证明了运动性能和鲁棒性。

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  • 来源
    《Symposium on fluid power and motion control 2018》|2018年|V001T01A044.1-V001T01A044.11|共11页
  • 会议地点 Bath(GB)
  • 作者单位

    Department of Energy Technology, Aalborg University DK-9220 Aalborg, Denmark;

    Department of Energy Technology, Aalborg University DK-9220 Aalborg, Denmark;

    Department of Energy Technology, Aalborg University DK-9220 Aalborg, Denmark;

    Department of Energy Technology, Aalborg University DK-9220 Aalborg, Denmark;

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  • 正文语种 eng
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