Mingzhe Hou
Papers
8
Total Citations
145
H-Index
6
About
Mingzhe Hou is a rising leader in nonlinear control theory, specializing in high-order fully actuated (HOFA) systems, adaptive backstepping, and prescribed performance control. His most impactful contribution is the development of a unified HOFA framework that elegantly addresses the "explosion of complexity" inherent in traditional backstepping for strict-feedback systems. By integrating high-order robust command filtered backstepping and high-gain observer-based derivative approximation, Hou has created controllers that are both robust to uncertainties and computationally tractable. His work on discrete-time HOFA model reference tracking for combined spacecraft simulators (45 citations) demonstrates the practical relevance of his theory for aerospace applications. Hou’s research also extends to event-triggered and switching adaptive control, ensuring prescribed performance even under sensor faults and sampled-data constraints. With over 145 total citations across his top papers, Hou is shaping the next generation of intelligent, high-performance control systems for complex nonlinear dynamics.
Research Focus
Key Achievements
Top Papers
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