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◆ IEEE Transactions on Fuzzy Systems2026-03-25· Control theory (sociology)

Adaptive Robust Control for Underactuated Bipedal Parallel Wheel-Legged Robots: A Nash Game-Based Constraint Following Approach

Huayong Zhong, Hailong Zhang, Shengchao Zhen, Hao Sun, Xiaolong Chen, X. S. Liu, Ye-Hwa Chen

原始摘要(英文原文)· Original abstract
This article proposes a Nash game-optimized adaptive robust control framework for bipedal parallel wheel-legged robots. Specifically, the framework targets a balance between tracking accuracy and control effort under underactuation, constraint coupling, and substantial uncertainties. To address these challenges, a constraint following adaptive robust controller is adopted, while gain selection is posed as a two-player Nash game between performance and cost objectives. Consequently, the resulting equilibrium yields controller gains without heuristic tuning. Furthermore, Lyapunov analysis establishes uniform ultimate boundedness of the closed-loop trajectories under bounded disturbances and model errors. Finally, numerical simulations verify that the proposed approach achieves a superior balance, concurrently enhancing tracking accuracy while significantly reducing control effort compared to conventional methods.
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Adaptive Robust Control for Underactuated Bipedal Parallel Wheel-Legged Robots: A Nash Game-Based Constraint Following Approach — 科研速览 Science Skim