采用多项式矩阵分解对具有三输入两输出通道的对象进行多通道控制器综合

A. Voevoda, V. Shipagin, V. Filushov
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引用次数: 1

摘要

在将多项式方法应用于多通道控制器的合成时,需要用到多项式矩阵演算。但在使用该方法时,主要考虑的是输出通道数与输入通道数相等的植物。为了方便在矩阵多项式计算中求解线性代数方程组,这是必要的。相当多的实际技术系统具有数量不等的输入和输出通道。同时,对于输入输出效应数量不等的多通道对象,采用多项式方法合成控制器的问题研究不够深入。在本文中,我们考虑了一个不稳定对象的线性模型的例子,该模型由三个标准连杆组成,其中三个通道用于输入作用,两个通道用于输出作用。需要达到输出向量值的一定质量指标,而控制则在系统的反馈中进行,并与输入动作进行汇总。植物特征是将任务限制在第二个输出,因为它本质上是第一个输出的导数。对象被表示为左手多项式矩阵分数阶描述,控制器被表示为右手多项式矩阵分数阶描述。对于一个封闭系统的特征矩阵的形成,利用这种类型的对象和控制器分解,证明了一些结构系统的变换。所考虑的植物的简单性与为这种植物类演示多项式综合方法的便利性有关。
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Multichannel controller synthesis for the plant with three input and two output channels using polynomial matrix decomposition
When applying polynomial methods for the synthesis of multichannel controllers, there is a need for polynomial matrix calculus. However, when using this method, plants with the number of output channels equal to the number of input channels are mainly considered. This is necessary for the convenience of solving a system of linear algebraic equations in a matrix polynomial calculation. A fairly large number of real technical systems have an unequal number of input and output channels. At the same time, the issue of the synthesis of controllers by the polynomial method for multi-channel plants with an unequal number of input and output effects is not worked out in depth enough. In this paper, we consider an example of a linear model of an unstable plant consisting of three standard links with three channels for the input action and two channels for the output action. It is necessary to achieve certain quality indicators of the output vector value, while the control is carried out in the feedback of the system and is summed up with the input action. The plant feature is to limit the task to the second output, since it is essentially a derivative of the first output. The plant was represented as a left - hand polynomial matrix fractional description, and the controller was represented as a right-hand one. For the formation of the characteristic matrix of a closed system, with this variant of the plant and controller decomposition, some structural system transformations are demonstrated. The plant simplicity under consideration is related to the convenience of demonstrating a polynomial synthesis method for such a plants class.
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