collaborators

5 papers

math.OC2026

Density-Driven Optimal Control: Convergence Guarantees for Stochastic LTI Multi-Agent Systems

Kooktae Lee

This paper addresses the decentralized non-uniform area coverage problem for multi-agent systems, a critical task in missions with high spatial priority and resource constraints. W…

eess.SY2026

Feedforward Density-Driven Optimal Control for Tracking Time-Varying Distributions with Guaranteed Stability

Julian Martinez, Kooktae Lee

This paper addresses the spatiotemporal mismatch in multi-agent distribution tracking within time-varying environments. While recent advancements in Density-Driven Optimal Control…

math.OC2026

Computationally Efficient Density-Driven Optimal Control via Analytical KKT Reduction and Contractive MPC

Julian Martinez, Kooktae Lee

Efficient coordination for collective spatial distribution is a fundamental challenge in multi-agent systems. Prior research on Density-Driven Optimal Control (D2OC) established a…

cs.MA2026

AI-Augmented Density-Driven Optimal Control (D2OC) for Decentralized Environmental Mapping

Kooktae Lee, Julian Martinez

This paper presents an AI-augmented decentralized framework for multi-agent (multi-robot) environmental mapping under limited sensing and communication. While conventional coverage…

eess.SY2025

Breaking Symmetry-Induced Degeneracy in Multi-Agent Ergodic Coverage via Stochastic Spectral Control

Kooktae Lee, Julian Martinez

Multi-agent ergodic coverage via Spectral Multiscale Coverage (SMC) provides a principled framework for driving a team of agents so that their collective time-averaged trajectories…