A novel fastest control technology:principles and applications
SHI Shang-yao
LI Jun
LIU Zhao-hua
LIU Jia-hao
CHEN Peng-yun
Abstract:In the practical field of control engineering,the traditional proportional integral-differential(PID)control remains dominant.The first-order inertial filter(FOIF)serves as the foundation for the PID structure.The accelerated engineering fastest proportion-integration(AEFPI)controller is based on the accelerated engineering fastest tracking filter(AEFTF).However,there is a lack of comprehensive research and analysis on"AEFPI"controller.This paper found a pro-totype problem for FOIF,investigates and analyzes the mechanism and physical defects of the fastest tracking filter.It also explores its output tracking input characteristics in engineering reconstruction,its frequency domain filtering characteris-tics,and the control performance of the constructed accelerated engineering fastest proportional-integral controller.From a technical perspective,it is revealed that properties associated with low-pass filters play a decisive role in determining performance outcomes for this constructed controller.Through mathematical calculations,simulation experiments verifi-cation,and existing engineering practices,it has been proven that this accelerated engineering fastest proportional integral controller exhibits remarkable feedback control performance.
Keywords:engineering reconstruction problemaccelerated engineering fastest tracking filteraccelerated engineering fastest proportional-integralnovel fastest control technologyright triangle window
Publication Date:2024-08-28
Online Publishing Date:2025-08-15(First online date of this platform, not the publication date of the document)
Pages:9( 1408-1416 )
Control Theory & Applications

Control Theory & Applications

ISTICPKUEICSCD
ISSN:1000-8152
Year, Vol.(Issue):2024,41(8)