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Automated modeling and energy saving adaptive robust control of electro-hydraulic systems with programmable valves.

机译:具有可编程阀的电动液压系统的自动化建模和节能自适应鲁棒控制。

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摘要

As the applications of electro-hydraulic systems become increasingly widespread, the demand for low cost, high-level control performance and significant energy saving schemes gets stronger and stronger. The thesis proposes an intelligent mechatronics approach---the integration of advanced control techniques with novel hardware reconfiguration and/or re-design---to meet these industrial needs. The Purdue programmable valves; a unique configuration of five independently controlled poppet type cartridge valves, enable not only the decoupled meter-in and meter-out flow controls but also the precise control of the cross-port regeneration flow. When properly controlled, the increased hardware flexibility and controllability lead to significant energy-saving, due to the reduced working pressures and the full use of free regeneration flows.;However, the increased hardware flexibility also results in increased complexity in controlling such a multi-input-dual-objective system. A two-level coordinated control scheme is proposed in the thesis: the task-level configures the valve usage for maximal energy saving, and the valve-level utilizes Adaptive Robust Control (ARC) technique to guarantee the closed-loop system stability and performance under various model uncertainties and disturbances. Comparative experimental results were obtained to show the high-level control performance and significant energy saving achieved with the proposed low cost programmable valves. Relevant control issues, such as using the manufacturer supplied flow mappings and the deadband problem of electro-hydraulic systems, are discussed in detail in the thesis as well.;Lack of suitable mathematical model has limited the cartridge valve to low cost applications where precision motion control was not of major concern. The thesis proposes an on-board modeling approach to decompose and approximate the unknown valve flow mapping with some localized orthogonal basis functions. The weighting parameters of the basis functions as well as the unknown system parameters were then estimated simultaneously based on the pressure dynamics of the cylinder for regions where sufficient on-board measurement data were available. Experimental studies have been obtained to demonstrate the feasibility of the proposed method and the improvement of control performance with the estimated flow mappings.
机译:随着电动液压系统的应用变得越来越广泛,对低成本,高级控制性能和重要的节能方案的需求越来越强。本文提出了一种智能机电一体化方法-将先进的控制技术与新颖的硬件重新配置和/或重新设计相结合-来满足这些工业需求。 Purdue可编程阀;五个独立控制的提升型插装阀的独特配置,不仅可以实现分离的进水口和出水口流量控制,还可以精确控制跨端口再生流量。如果受到适当的控制,由于降低的工作压力和充分利用自由的再生流,增加的硬件灵活性和可控制性可带来显着的节能效果。但是,增加的硬件灵活性还导致控制此类多任务系统的复杂性增加。输入双目标系统。本文提出了一种两级协调控制方案:任务级配置阀门使用以最大程度地节能,阀门级利用自适应鲁棒控制(ARC)技术来确保闭环系统的稳定性和性能。各种模型不确定性和干扰。获得的对比实验结果表明,采用建议的低成本可编程阀可以实现高水平的控制性能和显着的节能效果。论文中还详细讨论了相关的控制问题,例如使用制造商提供的流量映射和电动液压系统的死区问题。;缺乏合适的数学模型已将插装阀限制在低成本应用中,在这些应用中,精确运动控制不是主要问题。本文提出了一种基于局部正交基函数分解和逼近未知气门流量映射的车载建模方法。然后,根据汽缸的压力动态,在有足够的机载测量数据的区域,同时估算基本功能的加权参数以及未知的系统参数。实验研究已经获得证明该方法的可行性,并通过估计的流量映射来改善控制性能。

著录项

  • 作者

    Liu, Song.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 100 p.
  • 总页数 100
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

  • 入库时间 2022-08-17 11:41:38

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