Papers
1
Total Citations
3
H-Index
1
About
Yongxin Li is a pioneering researcher in nonlinear dynamics and chaos theory, with a focus on generating complex chaotic attractors and applying them to real-world robotics. His most-cited work, "Symmetric Pseudo-Multi-Scroll Attractor and Its Application in Mobile Robot Path Planning" (2024), introduces a novel symmetrization technique for attractor doubling in discrete maps, producing pseudo-multi-scroll attractors with exceptionally high phase-space complexity. This breakthrough enables more efficient and unpredictable path planning for mobile robots, directly linking theoretical chaos to practical autonomous navigation. With 3 citations already in its first year, the paper signals growing recognition of Li’s contributions to chaos-based engineering. His research elegantly bridges abstract mathematical attractor design and tangible robotic applications, offering students and engineers a powerful toolkit for enhancing exploration algorithms in uncertain environments. Li’s work stands out for its clarity in translating complex dynamical systems into deployable solutions, marking him as an emerging leader in the intersection of chaos theory and intelligent robotics.
Research Focus
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Top Papers
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