About

Zexiang Li is a pioneering roboticist whose work spans robotic manipulation, multifingered grasping, and nonholonomic motion planning — fields that sit at the intersection of mathematics, control theory, and mechanical engineering. He is perhaps best known as co-author of "A Mathematical Introduction to Robotic Manipulation," a landmark textbook that has accumulated nearly 9,400 citations across its editions and remains a foundational reference for generations of robotics researchers and engineers worldwide. The work's elegant geometric framework, rooted in screw theory and Lie groups, transformed how kinematics and dynamics are taught and applied. Li's early contributions to multifingered robotic grasping — particularly his formulations of grasp quality measures, force closure, and coordinated manipulation — helped establish the rigorous mathematical foundations that the field now takes for granted, collectively drawing hundreds of citations. His later reformulation of grasp analysis as linear matrix inequality problems provided computationally tractable solutions to long-standing challenges in dextrous manipulation. Beyond grasping, Li made significant contributions to nonholonomic motion planning, including the celebrated "falling cat" problem, illuminating how constrained mechanical systems can achieve complex reconfigurations. Across decades of research, Li's work exemplifies how deep mathematical insight can drive transformative advances in robotics.

Research Focus

Key Achievements

27
H-Index
66
Papers
13,111
Total Citations
199
Avg Citations/Paper
🏆 Most Cited Paper
A Mathematical Introduction to Robotic Manipulation
6,720 citations · 2017
📈 Most Prolific Year: 2002 (7 Papers)
🤝 Key Collaborators: 77
🏛 Institutions: University of California, Berkeley, Hong Kong University of Science and Technology, Courant Institute of Mathematical Sciences, Concordia University, Shenzhen Polytechnic, University of Hong Kong

Top Papers

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    Nonholonomic Motion Planning
    275 citations · 2017
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    Nonholonomic Motion Planning
    266 citations · 1993
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Key Collaborators

Contact & Links

Available for collaboration
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