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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Analysis of Discrete Time Schemes for Milling Forces Control under Fractional Order Holds
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Analysis of Discrete Time Schemes for Milling Forces Control under Fractional Order Holds

机译:分数阶暂停下铣削力控制的离散时间方案分析

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摘要

In this paper, discrete time model reference control schemes for practical milling using different discretization of the continuous-time plant are presented. First, a basic controller scheme is addressed where a fractional order hold with pre-fixed value of the gain is used. Secondly, a multi-model scheme, which outputs different discretization in parallel with the continuous-time milling system transfer function under a fractional order hold (FROH) of correcting β ∈ [-1,1], is dealt with. Then, an intelligent design framework is designed as a supervisory scheme with two hierarchical levels in order to find the most appropriate value for the gain β. For choosing the value of β, a tracking performance index is designed. It evaluates each pre-defined discretization of the continuous time milling transfer function and the scheme chooses the one with the smallest value of the index in order to generate the real control input to the plant. Two different methods of adjusting this value are presented and discussed. The first one selects a β-value among a fixed pre-defined set of possible values, while the second one the value of β is updated by adding or subtracting a small quantity.
机译:在本文中,提出了使用连续时间工厂的不同离散化进行实际铣削的离散时间模型参考控制方案。首先,解决了一种基本的控制器方案,其中使用了具有预先确定的增益值的分数阶保持。其次,处理一种多模型方案,该方案在校正β∈[-1,1]的分数阶保持(FROH)下与连续时间铣削系统传递函数并行输出不同的离散化。然后,将智能设计框架设计为具有两个层次级别的管理方案,以便为增益β找到最合适的值。为了选择β的值,设计了跟踪性能指标。它评估连续时间铣削传递函数的每个预定义离散化,并且该方案选择索引值最小的一个,以便生成对工厂的实际控制输入。提出并讨论了两种不同的方法来调节该值。第一个选择一组固定的预定义可能值中的一个β值,而第二个选择β的值是通过增加或减去少量来更新的。

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