用于离散多输入多输出双线性过程和对象控制结构选择的广义汉克尔相互作用索引阵列

H. Shaker, M. Tahavori
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引用次数: 6

摘要

控制技术向着分散控制和部分分散控制方向发展。为了确保分散控制或部分分散控制在实践中取得成功,第一步是确定合适的控制结构。控制结构的选择是为控制设计选择合适的输入输出对的任务,因此控制结构的选择是非常重要的。研究了离散多输入多输出双线性系统的控制结构选择问题。本文介绍了离散双线性过程和对象的广义交叉gramian。研究了广义交叉格拉姆量的存在性,证明了交叉格拉姆量的存在性可以通过求解广义Sylvester方程得到。为了高效地求解广义Sylvester方程,提出了一种迭代求解方法。计算了离散时间MIMO双线性系统的所有SISO子系统的广义交叉矩阵。利用这些图建立了广义汉克尔相互作用索引数组,用于控制结构的选择。本文提出的控制结构选择方法是为数不多的支持双线性过程和对象的方法之一,具有基于gramian方法的优点,并且与同类方法相比计算效率更高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Generalized Hankel Interaction Index Array for control structure selection for discrete-time MIMO bilinear processes and plants
The control technology has been orientated towards decentralized and partially decentralized control strategies. To ensure the success of a decentralized or a partially decentralized control in practice, the first necessary step is to determine a suitable control structure. The control structure selection which is the task of selecting suitable input and output pairs for control design is therefore very important. This paper focuses on control structure selection for discrete-time MIMO bilinear systems. The generalized cross-gramian is introduced in this paper for discrete-time bilinear processes and plants. The existence of the generalized cross-gramian is studied and it is shown that if the cross-gramian exists, it can be obtained by solving a generalized Sylvester equation. To solve the generalized Sylvester equation in a computationally efficient way, an iterative method is developed and presented. The generalized cross-gramians are computed for all SISO subsystems of the discrete-time MIMO bilinear systems. These gramians are used to build the generalized Hankel Interaction Index Array which is used for control structure selection. The proposed method for control structure selection is among the few methods supporting bilinear processes and plants, enjoys the advantages of gramian based methods and it is more efficient in terms of computations compared to its counterparts.
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