Jul 2026· 2026 IEEE/ASME International Conference on Advanced Intelligent Mechatronics (AIM)· pp. 1-8· 0 citations· 17 references
Computer Science
Abstract
To improve torque capacity and energy efficiency of humanoid ankles, this paper proposes a 2-DoF parallel elastic actuator (PEA). The main novelty of the proposed design lies in its dual-cam, single-gas-spring architecture, which enables torque compensation in both pitch and roll using a shared elastic element, thereby improving structural compactness compared with conventional multi-element compensation schemes. By leveraging parallel gas springs and customized cam modules, the proposed architecture provides dual-axis torque assistance tailored to specific task requirements. The second key contribution is the formulation of a coupled 2-DoF mathematical model that explicitly captures the interdependence between the two compensation units through the shared spring. Based on this model, an optimization-based design framework is developed to synthesize customized cam profiles from prescribed torque references, establishing a systematic link from task requirements to hardware realization. The complete lower-leg CAD integration is presented in detail. Static FEA and kinematic simulations confirm the design’s feasibility and torque-relief effectiveness. The results highlight the proposed design as a compact, customizable solution for 2-DoF humanoid ankle torque compensation.
Legged animals achieve efficient locomotion by exploiting intrinsic mechanical compliance, where elastic tissues store and release energy during stance. In contrast, most legged robots rely on rigid actuation and emulate compliance through control, leading to high actuator torque demands. Motivated by this gap, this pa...
Mustafa Akbaba, M. Ankaralı, U. Saranlı· International Conference on...· 0 citations
This letter presents a compact torsion-bar-based variable gravity compensation (TVGC) mechanism for robotic joints. Unlike conventional compensators that employ externally mounted elastic elements with fixed torque characteristics, the proposed TVGC embeds a high-stiffness torsion bar within the link and integrates a r...
Wonhyoung Lee, I. Park, Woojae Lee et al.· IEEE Robotics and Automation...· 0 citations
Underactuated tendon-driven hands offer compact actuation and passive compliance, but tendon elongation under restoring-spring loading introduces configuration-dependent joint deviations. This paper presents H-PAC, a modular 6-actuator, 15-DoF robotic hand with a control-oriented modeling and implementation framework....
Teng-Fei Yan, Jiong-Xu Chen, Teng Wang et al.· 0 citations
To enhance the efficacy and safety of rehabilitation, this study presents a bionic ankle rehabilitation mechanism integrated with a posture-switching function. The device utilizes a parallelogram mechanism to address the challenges of sit-to-stand (STS) transition assistance. By synergizing a dual crank-linkage with a...
Kun Liu, Jialun He, Xiaodong Huang et al.· 2026 IEEE International Conf...· 0 citations
Design, modeling, and experimental validation of a self-reconfigurable parallel ankle rehabilitation platform demonstrate the approach’s feasibility, demonstrating stable trajectory tracking and setpoint regulation under practical conditions, with minor deviations attributable to actuator and mechanical nonlinearities.
Abdulaziz Alrais, Kun Wang, Jian S. Dai et al.· Design for Augmented Humanit...· 1 citation
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