Xindi Xu
Papers
2
Total Citations
9
H-Index
2
About
Xindi Xu is a rising researcher in the field of nonlinear control systems, with a primary focus on adaptive control, prescribed performance control (PPC), and event-triggered mechanisms. Their work addresses critical challenges in ensuring stability and performance for uncertain strict-feedback nonlinear systems, particularly under resource constraints and sensor faults. Xu’s major contributions include the development of novel sampled-data-based and switching periodic event-triggering strategies that guarantee global prescribed performance, even when system uncertainties and sensor faults are present. For example, their 2023 paper on sampled-data-based event-triggered adaptive PPC has already garnered 6 citations, while their 2024 work on switching periodic event-triggered PPC with sensor faults has received 3 citations, reflecting growing recognition in the control community. These contributions are notable for integrating practical implementation concerns—such as limited communication bandwidth and sensor reliability—with rigorous theoretical guarantees. Xu’s research is particularly valuable for applications in robotics, autonomous systems, and industrial automation, where performance and safety are paramount. As a young scholar, Xu is establishing a reputation for advancing the frontier of adaptive and event-triggered control, making their work essential reading for students and researchers interested in modern nonlinear control theory.
Research Focus
Key Achievements
Top Papers
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