Litcius/Paper detail

A Novel Chaotic Fractional-Order Beetle Swarm Optimization Algorithm and Its Application for Load-Frequency Active Disturbance Rejection Control

Yuemin Zheng, Zhaoyang Huang, Jin Tao, Hao Sun, Qinglin Sun, Mingwei Sun, Matthias Dehmer, Zengqiang Chen

2021IEEE Transactions on Circuits & Systems II Express Briefs36 citationsDOI

Abstract

This brief proposes a novel chaotic fractional-order beetle swarm optimization (CFBSO) algorithm that combines chaos concepts and a fractional derivative structure with the beetle swarm algorithm. The proposed CFBSO was compared with other advanced meta-heuristic algorithms on 23 benchmark functions with single-peak, multi-peak, and fixed-dimensional multi-peak optimization problems, and the effectiveness and superiority of the proposed algorithm were verified. The proposed CFBSO was then used to optimize the parameters of the active disturbance rejection controller (ADRC). The CFBSO-based ADRC was further applied for the load frequency control (LFC) system of a four-area interconnected power system consisting of a hydraulic turbine with a non-minimum phase (NMP) and three reheat turbines. The results showed that the proposed method had a smaller undershoot and shorter settling time than those obtained by a linear ADRC and a proportional–integral–derivative controller. Thus, it can meet the high-performance requirements of LFC.

Topics & Concepts

Control theory (sociology)Benchmark (surveying)Swarm behaviourSettling timeChaoticController (irrigation)Fractional calculusComputer scienceAlgorithmMathematicsMathematical optimizationEngineeringControl engineeringControl (management)Step responseApplied mathematicsGeodesyGeographyArtificial intelligenceBiologyAgronomyFrequency Control in Power SystemsMicrogrid Control and OptimizationPower System Optimization and Stability