Observer-Based Fuzzy PID Control for Nonlinear Systems With Degraded Measurements: Dealing With Randomly Perturbed Sampling Periods

IF 11.9 1区 计算机科学 Q1 COMPUTER SCIENCE, ARTIFICIAL INTELLIGENCE IEEE Transactions on Fuzzy Systems Pub Date : 2024-09-23 DOI:10.1109/TFUZZ.2024.3466218
Yezheng Wang;Zidong Wang;Lei Zou;Quanbo Ge;Hongli Dong
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Abstract

This article addresses the problem of observer-based fuzzy proportional-integral-derivative (PID) control for a class of nonlinear systems subject to degraded measurements and randomly perturbed sampling periods (RPSPs). In the existing results, the degraded measurements and RPSPs are handled separately, where the sampling of different sensors is usually assumed to be synchronous. In our work, a comprehensive model is built to reflect the joint effects of degraded measurements and RPSPs by using a series of stochastic variable sequences and a set of Markov processes. In this model, the sampling periods of each sensor are allowed to be diverse, time-varying, and randomly perturbed, thereby fully capturing the environmental effects and device constraints. Different from the existing literature that uses proportional type controllers, an observer-based fuzzy PID controller with a modified structure is proposed, which fully utilizes the system information. To overcome the difficulties of the incomplete measurement information, some auxiliary variables related to the sampling periods are introduced under which the measurement output is transformed into a form delayed with stochastic delays. Subsequently, by using the special variable separation and inequality technique, sufficient conditions are derived to ensure the exponentially ultimate boundedness of the closed-loop system in the mean-square sense. The desired gains for the observer and PID controller are obtained through the solution of an optimization problem. Last, the effectiveness of the developed approach is demonstrated through simulation examples.
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基于观测器的测量劣化非线性系统模糊 PID 控制:处理随机扰动采样周期
本文研究了一类具有退化测量和随机摄动采样周期的非线性系统的基于观测器的模糊比例-积分-导数(PID)控制问题。在现有的结果中,退化测量和rpsp是分开处理的,其中通常假设不同传感器的采样是同步的。在我们的工作中,利用一系列随机变量序列和一组马尔可夫过程建立了一个综合模型来反映退化测量和rpsp的联合效应。在该模型中,允许每个传感器的采样周期是多样的、时变的和随机扰动的,从而充分捕捉到环境影响和设备约束。与现有文献中使用比例控制器不同,本文提出了一种基于观测器的模糊PID控制器,并对其结构进行了改进,充分利用了系统信息。为了克服测量信息不完全的困难,引入了一些与采样周期相关的辅助变量,将测量输出转换为具有随机延迟的延迟形式。然后,利用特殊变量分离和不等式技术,导出了在均方意义下闭环系统指数极限有界的充分条件。通过求解优化问题得到观测器和PID控制器的期望增益。最后,通过仿真算例验证了所提方法的有效性。
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来源期刊
IEEE Transactions on Fuzzy Systems
IEEE Transactions on Fuzzy Systems 工程技术-工程:电子与电气
CiteScore
20.50
自引率
13.40%
发文量
517
审稿时长
3.0 months
期刊介绍: The IEEE Transactions on Fuzzy Systems is a scholarly journal that focuses on the theory, design, and application of fuzzy systems. It aims to publish high-quality technical papers that contribute significant technical knowledge and exploratory developments in the field of fuzzy systems. The journal particularly emphasizes engineering systems and scientific applications. In addition to research articles, the Transactions also includes a letters section featuring current information, comments, and rebuttals related to published papers.
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