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機構設計arXiv:2308.11018

ウェアラブルロボット機構の計算的合成:股関節機構への応用

Computational Synthesis of Wearable Robot Mechanisms: Application to Hip-Joint Mechanisms

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ウェアラブルロボットのリンク機構設計を勾配ベース最適化問題に変換し、所望の自由度・可動域・力伝達特性を満たす非直列型股関節機構のトポロジーと寸法を自動合成する手法を提案した。

著者: Seok Won Kang, Jegyeong Ryu, Suh In Kim, Youngsoo Kim, Yoon Young Kim

分類: cs.RO

原文アブストラクト

Since wearable linkage mechanisms could control the moment transmission from actuator(s) to wearers, they can help ensure that even low-cost wearable systems provide advanced functionality tailored to users' needs. For example, if a hip mechanism transforms an input torque into a spatially-varying moment, a wearer can get effective assistance both in the sagittal and frontal planes during walking, even with an affordable single-actuator system. However, due to the combinatorial nature of the linkage mechanism design space, the topologies of such nonlinear-moment-generating mechanisms are challenging to determine, even with significant computational resources and numerical data. Furthermore, on-premise production development and interactive design are nearly impossible in conventional synthesis approaches. Here, we propose an innovative autonomous computational approach for synthesizing such wearable robot mechanisms, eliminating the need for exhaustive searches or numerous data sets. Our method transforms the synthesis problem into a gradient-based optimization problem with sophisticated objective and constraint functions while ensuring the desired degree of freedom, range of motion, and force transmission characteristics. To generate arbitrary mechanism topologies and dimensions, we employed a unified ground model. By applying the proposed method for the design of hip joint mechanisms, the topologies and dimensions of non-series-type hip joint mechanisms were obtained. Biomechanical simulations validated its multi-moment assistance capability, and its wearability was verified via prototype fabrication. The proposed design strategy can open a new way to design various wearable robot mechanisms, such as shoulders, knees, and ankles.

関連論文

PR本紙発行元 EmplifAI