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Bipedal Balance Control with Whole-body Musculoskeletal Standing and Falling Simulations

Published: June 11, 2025 | arXiv ID: 2506.09383v2

By: Chengtian Ma , Yunyue Wei , Chenhui Zuo and more

Potential Business Impact:

Helps robots and people stay balanced.

Business Areas:
Robotics Hardware, Science and Engineering, Software

Balance control is important for human and bipedal robotic systems. While dynamic balance during locomotion has received considerable attention, quantitative understanding of static balance and falling remains limited. This work presents a hierarchical control pipeline for simulating human balance via a comprehensive whole-body musculoskeletal system. We identified spatiotemporal dynamics of balancing during stable standing, revealed the impact of muscle injury on balancing behavior, and generated fall contact patterns that aligned with clinical data. Furthermore, our simulated hip exoskeleton assistance demonstrated improvement in balance maintenance and reduced muscle effort under perturbation. This work offers unique muscle-level insights into human balance dynamics that are challenging to capture experimentally. It could provide a foundation for developing targeted interventions for individuals with balance impairments and support the advancement of humanoid robotic systems.

Country of Origin
🇨🇳 China

Page Count
16 pages

Category
Computer Science:
Robotics