Improving a Hybrid Algorithm for APCS Hierarchical Architecture Design via Hyperparameter Optimization
Ruslan Zakirzyanov
Abstract
Automated process control systems, widely used in industry, have a hierarchical multi-level tree-based architecture and are built using specialized hardware and software. Constructing such a control system from off-the-shelf industrial components with predetermined characteristics is a complex combinatorial optimization problem with multiple constraints. A hybrid method for constructing a tree-based structure is considered, combining a deterministic construction algorithm and an ant colony metaheuristic for device selection. The effectiveness of the metaheuristic algorithm depends on its hyperparameters, which are proposed to be optimized. This paper presents a general problem formulation, defines optimization criteria, describes the solution method, and provides several numerical examples.
Create a lesson
Related papers
Leader-Follower Formation Control with Prescribed Convergence Rates under Bearing Persistence of Excitation
Tarek Bouazza, Zhiqi Tang, Soulaimane Berkane et al.
On asymptotic stability of the time-varying Kalman filter for unstabilizable linear systems: an optimization perspective
James B. Rawlings, Titus Quah, Matthias A. Müller
Designing Grid-Aware Dynamic Specifications for Large Data Center Loads
Ashutossh Gupta, Vassilis Kekatos
Time-Optimal Operation of a Load-Hoisting Gantry Crane
Eric Mountain, Tarunraj Singh
Learning to Solve Two-Stage Stochastic Unit Commitment Problems with Quality Guarantees
Andrea Fusco, Andrea Lodi, Lavanya Marla
Towards Interaction Regulation from Human Feedback via Free Energy Minimization
Maria Paula Diaz Monfort, Cinzia Tomaselli, Michael Richardson et al.