Ruixian Zhang
Papers
1
Total Citations
15
H-Index
1
About
Ruixian Zhang is a researcher in control systems engineering, with a primary focus on switched and hybrid dynamical systems. Their most cited work introduces a novel tube-based approach to asynchronous observer design for discrete-time switched linear systems subject to amplitude-bounded disturbances. This contribution addresses a critical challenge in real-world control: ensuring state estimation stability even when the observer’s switching signal is delayed or mismatched with the plant’s mode. By establishing sufficient stability conditions under mode-dependent persistent dwell-time (MPDT) switching, Zhang’s framework provides a robust and practical solution for systems with uncertain or asynchronous mode information. This work, published in 2020, has already garnered 15 citations, reflecting its relevance to the growing field of resilient control. Zhang’s research bridges theoretical rigor with application-driven problems, offering tools that are valuable for engineers working on networked control, automotive systems, and autonomous vehicles. Their contributions are shaping how we design observers that remain reliable under imperfect switching conditions, making them a notable voice in modern control theory.
Research Focus
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Top Papers
- 1