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アシストロボットarXiv:2505.12525

自然な立ち上がり動作を再現可能な非装着型支援ロボットの開発

Development of a non-wearable support robot capable of reproducing natural standing-up movements

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装着型と非装着型の利点を融合した立ち上がり支援ロボットを開発し、股関節のS字軌道と膝の円弧軌道を4リンク機構で再現、軌道誤差4%以内を達成した。

著者: Atsuya Kusui, Susumu Hirai, Asuka Takai

分類: q-bio.NC, cs.HC, cs.RO

原文アブストラクト

To reproduce natural standing-up motion, recent studies have emphasized the importance of coordination between the assisting robot and the human. However, many non-wearable assistive devices have struggled to replicate natural motion trajectories. While wearable devices offer better coordination with the human body, they present challenges in completely isolating mechanical and electrical hazards. To address this, we developed a novel standing-assist robot that integrates features of both wearable and non-wearable systems, aiming to achieve high coordination while maintaining safety. The device employs a four-link mechanism aligned with the human joint structure, designed to reproduce the S-shaped trajectory of the hip and the arc trajectory of the knee during natural standing-up motion. Subject-specific trajectory data were obtained using a gyroscope, and the link lengths were determined to drive the seat along the optimal path. A feedforward speed control using a stepping motor was implemented, and the reproducibility of the trajectory was evaluated based on the geometric constraints of the mechanism. A load-bearing experiment with weights fixed to the seat was conducted to assess the trajectory accuracy under different conditions. Results showed that the reproduction errors for the hip and knee trajectories remained within approximately 4 percent of the seat's total displacement, demonstrating high fidelity to the target paths. In addition, durability testing, thermal safety evaluation, and risk assessment confirmed the reliability and safety of the system for indoor use. These findings suggest that the proposed design offers a promising approach for developing assistive technologies that adapt to individual physical characteristics, with potential applications in elderly care and rehabilitation.

PR本紙発行元 EmplifAI