期刊论文详细信息
Proceedings of the Estonian Academy of Sciences
Functions’ algebra in nonlinear control: computational aspects and software
Alexey Ye. Shumsky1  Juri Belikov1  Ãœlle Kotta1  Alexey Zhirabok1  Arvo Kaldmäe1  Maris Tõnso1  Vadim Kaparin1 
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关键词: nonlinear control systems;    discrete-time systems;    functions’ algebra;    symbolic computation;   
DOI  :  10.3176/proc.2017.1.06
学科分类:化学(综合)
来源: Teaduste Akadeemia Kirjastus
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【 摘 要 】
The paper describes the Mathematica-based software for studying nonlinear control systems. The software relies on an algebraic method, called functions’ algebra. The advantage of this approach, over well-known linear algebraic and differential geometric methods is that it is applicable to certain non-smooth systems. The drawback is that the computations are more complicated since the approach manipulates directly with the functions related to the system equations and not with the differential one-forms/vector fields that simplify (linearize) the computations. We have implemented the basic operations of functions’ algebra, i.e., partial order, equivalence, summation, and multiplication, but also finding the simplest epresentative of an equivalence class. The next group of functions is related to the control system and involves binary relation, operators m, M, and computation of certain sequences of invariant vector functions on the basis of system equations. Finally, we have developed Mathematica functions, allowing us to solve the following control problems in case of discrete-time systems: checking accessibility, static state feedback linearization, and disturbance decoupling.
【 授权许可】

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