Y. Kurematsu

Kobe University

Papers

4

Total Citations

49

H-Index

3

About

Y. Kurematsu is a pioneering researcher in bipedal robotics, whose work has laid foundational groundwork for autonomous locomotion systems. Their primary research areas include motion planning, neural network-based control, and the application of neuro-oscillators for stable gait generation. Kurematsu’s most influential contribution is the introduction of an inverted pendulum model to simulate a biped robot’s center of gravity, a concept that has become a cornerstone in humanoid robotics. This approach, detailed in their 1990 paper with 23 citations, integrates a Hopfield-type neural network to solve inverse kinematics, enabling robust trajectory generation. Further advancing the field, Kurematsu developed a neuro-oscillator model composed of four mutually inhibitory neuron cells, which autonomously generates periodic walking patterns without predefined trajectories. This work, cited 15 times, demonstrates remarkable stability and adaptability to disturbances. Collectively, Kurematsu’s research has garnered over 49 citations, reflecting its lasting impact on autonomous motion planning and learning control. Their innovative synthesis of neural networks and dynamical systems continues to inspire modern approaches to bipedal locomotion, making them a key figure in the evolution of legged robotics.

Research Focus

Key Achievements

3
H-Index
4
Papers
49
Total Citations
12
Avg Citations/Paper
🏆 Most Cited Paper
Motion generation of a biped locomotive robot using an inverted pendulum model and neural networks
23 citations · 1990
📈 Most Prolific Year: 1990 (2 Papers)
🤝 Key Collaborators: 4
🏛 Institutions: Kobe University

Top Papers

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Key Collaborators

Contact & Links

Available for collaboration
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