Engineering Differential Equations: Innovations in Energy and Robotics

Deadline for manuscript submissions: March 30, 2026

 

Special Issue Editors

Dr. Anwarud Din Website  E-Mail: anwarud@mail.sysu.edu.cn
Guest Editor
Sun Yat-Sen University, China               
Interests: extinction; numerical simulation; stationary distribution; persistence; stochastic epidemic model

 

Special Issue Information

Recent advances in differential equations have opened new frontiers in the engineering sciences, particularly in energy systems and robotics. This Special Issue aims to highlight cutting-edge research that applies classical and modern differential equation techniques to model, simulate, and optimize systems in renewable energy, intelligent robotics, smart materials, and control engineering.

We welcome theoretical innovations, numerical methods, and real-world applications that address complex dynamic behaviors in power grids, battery management systems, robotic motion, multi-agent systems, and energy harvesting mechanisms. Topics such as stability analysis, stochastic differential equations, fractional calculus, and machine learning-integrated modeling approaches are of particular interest.

By bridging mathematical theory with engineering practice, this collection seeks to provide a platform for interdisciplinary dialogue and innovation. We encourage contributions from both academia and industry that demonstrate how advanced differential equation modeling can solve contemporary engineering challenges in sustainable energy and intelligent robotics.

 

Keywords

Engineering differential equations;
Energy systems modeling;
Robotic control and dynamics;
Fractional and stochastic differential equations;
Renewable energy optimization;
Multi-agent and swarm robotics;
Stability and bifurcation analysis;
Numerical methods for PDEs and ODEs;
Data-driven and hybrid modeling;
Smart grids and autonomous systems.

 

 

Published Papers