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FPGA Logic Devices for Precision Control: An Application to Large Friction Actuators with Payloads

机译:用于精确控制的FPGA逻辑器件:应用于带负载的大型摩擦执行器

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摘要

Precision control, which has the goal of making control precision approach measurement precision, is an important subject in modern control engineering. Control theory based on continuous-time systems has long reached this objective by providing tools for ensuring asymptotic stability and convergence. However, it is difficult to obtain this degree of precision control in discrete-time nonlinear systems such as a computer-controlled actuator with friction. This is because the z-transform, the common analysis tool for discrete-time systems, is not applicable to nonlinear systems. Furthermore, computation delays are inevitable in control implementations as long as digital signal processors (DSPs) or central processing units (CPUs) are used, necessarily resulting in systems that are discrete by nature. Thus, the discrepancy between the use of continuous-time systems in design and analysis and the use of discrete-time systems in control implementation has become a long-standing problem in the control of electromechanical systems, which fundamentally challenges the precision control objective.
机译:以使控制精度接近测量精度为目标的精度控制是现代控制工程中的重要课题。通过提供确保渐近稳定性和收敛性的工具,基于连续时间系统的控制理论早就达到了这一目标。但是,在离散时间非线性系统(例如带有摩擦力的计算机控制的执行器)中,很难获得这种精确度的控制。这是因为z变换是离散时间系统的常用分析工具,不适用于非线性系统。此外,只要使用数字信号处理器(DSP)或中央处理单元(CPU),控制实现中的计算延迟是不可避免的,这必然导致系统本质上是离散的。因此,在设计和分析中使用连续时间系统与在控制实现中使用离散时间系统之间的差异已成为机电系统控制中的一个长期存在的问题,这从根本上挑战了精确控制目标。

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  • 来源
    《Control Systems, IEEE》 |2014年第3期|54-75|共22页
  • 作者

    Zhu W.;

  • 作者单位

    Canadian Space Agency (CSA)|c|;

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  • 原文格式 PDF
  • 正文语种 eng
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