腱駆動柔軟アームの規定時間収束境界制御
Prescribed-Time Contracting-Boundary Control of a Tendon-Driven Flexible Arm
3対の拮抗腱で駆動される単節柔軟アームの曲率追従に対し、曲率の直交座標表現と立方性能境界を用いて、規定時間内に終端精度領域へ収束させる制御手法を開発し、数値・実験で検証した。
著者: Yi Lu, Chao Tang, Zhiji Han, Hongdu Wang
分類: cs.RO
原文アブストラクト
This study develops a prescribed-time performance-shaping control method for curvature tracking of a single-segment flexible arm actuated by three antagonistic tendon pairs. A Cartesian curvature representation is introduced to avoid the undefined bending direction at the straight configuration and to establish an explicit six-tendon kinematic mapping. A cubic performance boundary contracts smoothly from an initially admissible error bound to a nonzero terminal accuracy bound within a prescribed time. Based on this boundary, a dual transformation combining static symmetric error scaling and time-varying behavior shaping maps the tracking error into a fixed unit box. The resulting controller guarantees boundary invariance, prescribed-time entry into the terminal accuracy region, and subsequent asymptotic convergence. Numerical evaluations with Python and OpenCR--MuJoCo, together with a supervised reduced-order experiment on a two-section, four-channel platform, provide complementary validation. Across six experimental trials, no violation of the prescribed boundary is observed, and the proposed controller reduces the mean terminal curvature RMSE by 32.5% relative to a matched baseline, with comparable terminal-band entry times. These results support the feasibility of the proposed approach in the reduced-order experimental setting.
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