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Online control parameter optimization design for multi-machine coordinated loading system of hazardous substances.
Wang, Zuoxun; Cui, Chuanyu; Sui, Jinxue; Guo, Changkun.
Affiliation
  • Wang Z; School of Information and Electronic Engineering, Shandong Technology and Business University, 264005, China. Electronic address: 202214078@sdtbu.edu.cn.
  • Cui C; School of Information and Electronic Engineering, Shandong Technology and Business University, 264005, China. Electronic address: 2022420001@sdtbu.edu.cn.
  • Sui J; School of Information and Electronic Engineering, Shandong Technology and Business University, 264005, China. Electronic address: suijx@sdtbu.edu.cn.
  • Guo C; School of Information and Electronic Engineering, Shandong Technology and Business University, 264005, China. Electronic address: 2022420034@sdtbu.edu.cn.
ISA Trans ; 2024 Sep 12.
Article in En | MEDLINE | ID: mdl-39284749
ABSTRACT
To address the parameter instability issues in hazardous materials handling during multi-machine loading and unloading operations, we propose a Full-Scale Smart Parameter Optimization Control (FSPOC) system specifically designed for multi-machine coordination. This system leverages a novel fish scale prediction algorithm tailored for cooperative multi-machine environments. Initially, the fish scale prediction algorithm, inspired by bionic fish scales, is developed to predict future system behavior by analyzing historical data. Building on this algorithm, we introduce a disturbance cancellation control theorem and design a parameter optimization controller to enhance stability in high-dimensional nonlinear spaces. The FSPOC method is then applied to a multi-machine cooperative system, enabling online distributed parameter optimization for complex systems with multiple degrees of freedom. The effectiveness of the proposed method was validated through simulations, where it was compared with two other optimization techniques Genetic Algorithm-based PID (GAPID) and Chaotic Atomic Search Algorithm-based PID (CHASO). The simulation results confirm the superiority of the FSPOC method.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: ISA Trans Year: 2024 Document type: Article Country of publication: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: ISA Trans Year: 2024 Document type: Article Country of publication: United States