FrankaアームのためのStar-Worldワークスペース再形成によるリアクティブ3次元動作計画
Reactive 3D Motion Planning for a Franka Arm via Star-World Workspace Reshaping
膨張した障害物が重なる問題を解決するため、Star-World法で障害物を星型に再形成し、Frankaマニピュレータのリアクティブ制御を試みた。予備評価では成功率が向上したが、経路長の増加や過剰な統合による問題も見られた。
著者: Gia Dcosta, Saayuj Deshpande, Samhitha Vedire
分類: cs.RO, math.OC
原文アブストラクト
Safety inflation can cause nearby obstacles to overlap, violating the disjoint-obstacle assumptions used by many modulation-based reactive planners. We investigate Star-World workspace reshaping for three-dimensional reactive control of a Franka Emika Panda manipulator. At each update, intersecting inflated obstacles are clustered and replaced by star-shaped proxies before a dynamical-system-based end-effector controller is evaluated. A null-space artificial-potential-field term provides complementary arm-body avoidance. We compare reshaped and unreshaped obstacle representations in six PyBullet scenarios using goal attainment, path-length ratio, and computation time. In this preliminary 12-trial evaluation, reshaping reaches the goal in five of six scenarios, compared with four of six for the unreshaped baseline. It resolves the canonical overlapping-wall case and requires 0.68--8.70\,ms per workspace update for scenes containing one to seven obstacles. However, it also increases path length, produces near-equilibria in two cases, and closes a navigable corridor through over-aggressive merging. These results show both the promise and the practical limitations of transferring Star-World guarantees from workspace geometry to a redundant manipulator controlled through inverse kinematics.
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