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Robust fractional order controller for irrigation main canal pools with time-varying dynamical parameters.

机译:具有动态参数的灌溉主渠池的鲁棒分数阶控制器。

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摘要

A new method is proposed with which to design a class of robust fractional order controllers - which we denote as FPI controllers since they can be regarded as a generalization of standard PI controllers - for the effective control of water distribution in irrigation main canal pools characterized by time-varying dynamical parameters. The closed loop behavior of the nominal plant is defined by using frequency specifications, which are combined with an optimization procedure that minimizes the IAE (Integral of Absolute Error) - a cost related to the closed loop time response specifications - in the whole range of plant parameter variations. Interest in such robust fractional order controllers is justified by the fact that dynamical parameters of irrigation main canal pools may change drastically according to their operational regimes. Equivalent FPI, PI and PID controllers - in the sense of their exhibiting the same closed loop dynamics for the nominal plant specifications - were simulated for several working conditions, and their behaviors were compared. Additional issues, such as noise rejection or robustness to unmodelled high frequency dynamics have also been considered.Digital Object Identifier http://dx.doi.org/10.1016/j.compag.2011.01.018
机译:提出了一种设计一类鲁棒分数阶控制器的新方法-我们将其称为 FPI 控制器,因为它们可以被视为标准 PI 控制器的推广-以时变动力参数为特征的灌溉主渠池水分配的有效控制。标称工厂的闭环行为是通过使用频率规格定义的,该规格与优化程序相结合,该程序使 IAE ( A I n < i>绝对值(i> E rror)-与闭环时间响应规范相关的成本-在整个工厂参数变化范围内。灌溉主渠池的动态参数可能会根据其运行方式而发生巨大变化,这一事实证明了人们对这种鲁棒的分数阶控制器的兴趣。对等效的 FPI , PI 和 PID 控制器-在名义工厂规格上表现出相同的闭环动态的意义上-对几个工作条件及其行为进行了比较。还考虑了其​​他问题,例如噪声抑制或对未建模的高频动力学的鲁棒性。数字对象标识符http://dx.doi.org/10.1016/j.compag.2011.01.018

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