Applied Mathematics and Nonlinear Sciences
Journal license

Journal

Applied Mathematics and Nonlinear Sciences


Volume
& Issue

Volume 7, Issue 2


Published
on

June 6, 2023


Pages

219-228


DOI

Article

Application of Nonlinear Differential Equation in Electric Automation Control System


Authors

Feng Zhu Affiliation:
Electronical technology system, Industrial technology school of Suzhou industrial park, Jiangsu Suzhou 215000, China
, Yoonusraj Kodakkadan Affiliation:
College of Engineering, Applied Science University, Bahrain
and Yahya Lakys Affiliation:
College of Engineering and Technology, American University of the Middle East, Egaila, Al Ahmadi, Kuwait


Abstract

This article uses fifth-order nonlinear differential equations to describe the dynamic process of electrical automation control systems. This method first derives the equivalent system of the nonlinear fuzzy global system and then uses the orthogonal polynomial series expansion technique and its integral operation matrix. The local manifold at the dominant unstable equilibrium point of a single-machine infinite-bus system after a failure described by a two-dimensional quadratic nonlinear differential equation is calculated, and the stability boundary of the power system is obtained. The research results show that the output frequency fluctuation of the electrical automation control system is small after the algorithm is adopted, and the intelligent control system can accurately diagnose and warn the electrical faults. The system can meet the requirements of online voltage coordinated control.


Keywords

Nonlinear differential equation, Electrical automation control system, Voltage coordinated control, Model predictive control, 34M03


Citation

Zhu, F., Kodakkadan, Y., & Lakys, Y. (2022). Application of nonlinear differential equation in electric automation control system. Applied Mathematics and Nonlinear Sciences, 7(2), 219–228. https://doi.org/10.2478/amns.2022.2.00002

Published by: Engineering Journals

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