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首页> 外文期刊>International Journal of Applied Mathematics and Computer Science >CONTROL ERROR DYNAMIC MODIFICATION AS AN EFFICIENT TOOL FOR REDUCTION OF EFFECTS INTRODUCED BY ACTUATOR CONSTRAINTS
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CONTROL ERROR DYNAMIC MODIFICATION AS AN EFFICIENT TOOL FOR REDUCTION OF EFFECTS INTRODUCED BY ACTUATOR CONSTRAINTS

机译:控制误差动态修改作为一种有效的工具,可减少执行器约束带来的影响

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摘要

A modification of digital controller algorithms, based'on the introduction of a virtual reference value, which never exceeds active constraints in the actuator output is presented and investigated for some algorithms used in single-loop control systems. This idea, derived from virtual modification of a control error, can be used in digital control systems subjected to both magnitude and rate constraints. The modification is introduced in the form of on-line adaptation to the control task. Hence the design of optimal (in a specified sense) digital controller parameters can be separated from actuator constraints. The adaptation of the control algorithm (to actuator constraints) is performed by the transformation of the control error and is equivalent to the introduction of a new, virtual reference value for the control system. An application of this approach is presented through examples of three digital control algorithms: the PID algorithm, the dead-beat controller and the state space controller. In all cases, clear advantages of transients are observed, which yields some general conclusions to the problem of processing actuator constraints in control.
机译:提出并研究了基于虚拟参考值的数字控制器算法的修改方法,该方法从未超过执行器输出中的有效约束条件,并针对单回路控制系统中使用的某些算法进行了研究。这种从虚拟修改控制误差中得出的想法可以用于受幅度和速率约束的数字控制系统中。修改以在线适应控制任务的形式引入。因此,可以将最佳(在特定意义上)数字控制器参数的设计与执行器约束分开。控制算法(针对执行器约束)的适配通过控制误差的转换来完成,并且等效于为控制系统引入新的虚拟参考值。通过以下三种数字控制算法的示例来介绍这种方法的应用:PID算法,无差拍控制器和状态空间控制器。在所有情况下,都可以观察到瞬态的明显优势,这为处理控制中的执行器约束问题提供了一些一般性结论。

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