arXiv:2411.06320cs.RO2024-11中稿 · ICRA被引 5

通过肩部冗余建模实现机器人自体图像更新,提升双臂协同操作能力

Self-Body Image Acquisition and Posture Generation with Redundancy using Musculoskeletal Humanoid Shoulder Complex for Object Manipulation

  • 基于人体肩胛骨运动规律设计肩部逆运动学策略
  • 在Kengoro机器人上完成方向盘操作实验,验证双臂协调有效性
  • 通过手部相对物体位置自适应更新自体感知,适合复杂人形操作

我们提出一种基于肩部冗余的逆运动学方法,用于学习仿人机器人的实际自体图像,实现姿态生成与物体操作。该肩部结构包含可滑动的肩胛骨和开放球关节,由多组肌肉支持,具备广泛运动能力。为增强肌群冗余性,我们在设计中引入深层肌肉并稳定关节驱动。针对肩部冗余的姿态生成,采用基于人体肩肱节律的肩胛骨驱动策略。由于身体形变难以测量,准确获取自身状态具有挑战性。为此,我们开发了一种方法,通过识别手相对于物体的位置,动态更新自体图像以支持物体操作。该方法应用于全尺寸仿人机器人Kengoro,在方向盘操作实验中成功实现双手协同控制,验证了其有效性。

原文摘要 · Abstract (English)

We proposed a method for learning the actual body image of a musculoskeletal humanoid for posture generation and object manipulation using inverse kinematics with redundancy in the shoulder complex. The effectiveness of this method was confirmed by realizing automobile steering wheel operation. The shoulder complex has a scapula that glides over the rib cage and an open spherical joint, and is supported by numerous muscle groups, enabling a wide range of motion. As a development of the human mimetic shoulder complex, we have increased the muscle redundancy by implementing deep muscles and stabilize the joint drive. As a posture generation method to utilize the joint redundancy of the shoulder complex, we consider inverse kinematics based on the scapular drive strategy suggested by the scapulohumeral rhythm of the human body. In order to control a complex robot imitating a human body, it is essential to learn its own body image, but it is difficult to know its own state accurately due to its deformation which is difficult to measure. To solve this problem, we developed a method to acquire a self-body image that can be updated appropriately by recognizing the hand position relative to an object for the purpose of object manipulation. We apply the above methods to a full-body musculoskeletal humanoid, Kengoro, and confirm its effectiveness by conducting an experiment to operate a car steering wheel, which requires the appropriate use of both arms.

仿人机器人逆运动学自体感知

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