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Optimal paper web weight control system based on the Pontryagin’s maximum principle

机译:基于Pontryagin的最大原理的最佳纸纤维网重量控制系统

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摘要

The paper describes the stages of paper production, considers the structure of a paper-making machine. Questions related to the proof and use of the Pontryagin’s maximum principle in the theory of optimal control are considered. Optimal paper web weight control system based on the Pontryagin’s maximum principle is presented. Adaptive learning methods for modeling nonlinear systems represent some of the latest advances in adaptive algorithms and machine learning techniques designed to model and identify nonlinear systems. Real-world problems always involve a certain degree of non-linearity, which makes linear models a suboptimal choice. This article may be of interest to research engineers and practitioners in the study and application of control systems using adaptive regulators. This book serves as an essential resource for researchers, graduate students and doctoral students working in the field of machine learning, signal processing, adaptive filtering, nonlinear control, system identification, cooperative systems, and computational intelligence. This book may also be of interest to the industry market and practitioners working with a wide range of nonlinear systems.
机译:本文描述了纸生产的阶段,考虑了造纸机的结构。考虑了与Pontryagin在最佳控制理论中的证据和使用的证据和使用相关的问题。介绍了基于Pontryagin最大原理的最佳纸幅度控制系统。用于建模非线性系统的自适应学习方法代表了自适应算法和机器学习技术的一些最新进展,旨在模拟和识别非线性系统。现实世界问题始终涉及一定程度的非线性,这使线性模型成为次优选择。本文可能有兴趣使用自适应调节器研究和应用控制系统的研究和应用。本书作为研究人员,研究生和博士生在机器学习领域,信号处理,自适应过滤,非线性控制,系统识别,协作系统和计算智能工作的基本资源。本书也可能对业界市场和正在使用各种非线性系统的从业者感兴趣。

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