Control Systems and Optimization Letters
Vol 4, No 1 (2026)

Broad Learning System: A Derivation-Based Mathematical Formulation

Saputra, Dimas Chaerul Ekty (Unknown)
Rahmawati, Dyah Putri (Unknown)
Pertiwi, Affifah Mutiara (Unknown)
Shafarin, Muhammad Ijaz (Unknown)
Pertiwi, Kharisma Monika Dian (Unknown)
Win, Thinzar Aung (Unknown)
Futri, Irianna (Unknown)
Safitri, Pima Hani (Unknown)



Article Info

Publish Date
05 May 2026

Abstract

Broad Learning System is a wide learning framework that constructs nonlinear feature representations while enabling efficient model training through analytical solutions. This paper presents a derivation-based formulation of Broad Learning System that explains the mathematical structure underlying the learning process. The model constructs an expanded feature representation through feature mapping nodes followed by enhancement nodes that further enrich the learned representation. The learning problem is then expressed as a linear model in the constructed feature space, and the output weights are obtained using ridge regularized least squares optimization. This formulation allows the training process to be solved directly using matrix operations without iterative gradient based procedures. In addition, an incremental learning mechanism is introduced to enable efficient parameter updates when new samples or additional nodes are incorporated into the model. The presented formulation highlights how Broad Learning System combines nonlinear feature construction with computationally efficient closed form learning, providing a clear theoretical interpretation of the learning process.

Copyrights © 2026






Journal Info

Abbrev

csol

Publisher

Subject

Aerospace Engineering Automotive Engineering Computer Science & IT Control & Systems Engineering Electrical & Electronics Engineering Engineering

Description

Control Systems and Optimization Letters is an open-access journal offering authors the opportunity to publish in all fundamental and interdisciplinary areas of control and optimization, rapidly enabling a safe and sustainable interconnected human society. Control Systems and Optimization Letters ...