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Quasi-static hydraulic control systems and energy savings potential using independent metering four-valve assembly configuration.

机译:准静态液压控制系统和采用独立计量四阀组件配置的节能潜力。

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摘要

In this research, the four valve independent metering configuration is to be investigated. The Independent metering concept will be emphasized and compared to spool valve coupled metering conventional technologies. Research focuses on the energy savings potential of the four valve independent metering configuration in addition to improving performance.; The basic model of interest in this research is an actuator that is controlled by the four valve independent metering configuration to move beam like members of mobile hydraulic equipment such as tractor loader backhoes, excavators, and telehandlers.; Five distinct (or discrete) metering modes that exist in the literature are initially studied: Powered Extension, High Side Regeneration Extension, Low Side Regeneration Extension, Powered Retraction, and Low Side Regeneration Retraction. The energy saving potential of these modes is studied and comparisons between this system and a conventional spool valve controlled actuator are conducted.; The problem of switching between these five modes is treated as an optimal control problem of a switched dynamic system. Before solving the optimal control problem, a dynamic model for the system of interest is first derived. The model is experimentally validated. General theory for the optimal control problem is derived and then applied to the hydraulic system of interest. The results are then interpreted and explained by looking into the force-speed capability of modes.; The effect of mode switching on system performance is studied as well. The basic mechanical system used for this analysis is a continuous rotating beam that undergoes structural vibrations due to mode switching in the driving hydraulic actuator. A fully coupled actuator-beam model is investigated. A non-dimensional analysis is pursued to generalize the study results. The optimal switching analysis and the vibrational study lead to the idea of Continuously Variable Modes (CVMs).; Instead of having five distinct modes that determines the flow path by opening two of the four valves in the assembly, three Continuously Variable Modes are presented as an alternative way of controlling the four-valve configuration. These three CVMs combine the distinct modes and use three of the four valves to provide the fluid flow path. The five distinct modes become a special case of these three CVMs. It is going to be shown that CVMs have more force-speed capabilities than the distinct modes and provide for better velocity and vibrational performance by virtue of always offering a continuous flow path. The theory behind CVMs is presented and experimental validation follows.
机译:在这项研究中,将研究四阀独立的计量配置。独立计量概念将得到强调,并将其与滑阀耦合计量传统技术进行比较。除了提高性能外,研究重点还在于四阀独立计量配置的节能潜力。该研究中感兴趣的基本模型是一种执行器,该执行器由四阀独立的计量配置控制,以移动梁式移动液压设备的构件,例如拖拉机装载机反铲,挖掘机和伸缩叉车。最初研究了文献中存在的五种不同的(或离散的)计量模式:电动扩展,高端再生扩展,低侧再生扩展,电动收缩和低侧再生收缩。研究了这些模式的节能潜力,并对该系统与传统的滑阀控制执行器进行了比较。在这五个模式之间切换的问题被视为切换动态系统的最佳控制问题。在解决最佳控制问题之前,首先要导出目标系统的动态模型。该模型已通过实验验证。推导了最佳控制问题的一般理论,然后将其应用于目标液压系统。然后通过研究模式的力速能力来解释和解释结果。还研究了模式切换对系统性能的影响。用于此分析的基本机械系统是连续的旋转梁,由于驱动液压致动器中的模式切换,该旋转梁经历结构振动。研究了完全耦合的致动器梁模型。进行无量纲分析以概括研究结果。最佳的开关分析和振动研究导致了连续可变模式(CVM)的构想。除了通过打开组件中四个阀中的两个来确定流路的五个不同模式外,还提供了三种连续可变模式作为控制四阀配置的替代方法。这三个CVM组合了不同的模式,并使用四个阀中的三个来提供流体流动路径。五个不同的模式成为这三个CVM的特例。将会证明,CVM比各种模式具有更大的力速能力,并且由于始终提供连续的流动路径,因此具有更好的速度和振动性能。介绍了CVM背后的理论,并进行了实验验证。

著录项

  • 作者

    Shenouda, Amir.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 223 p.
  • 总页数 223
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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