雅可比矩阵与行列式
并联机械手
奇点
计算机科学
运动学
引力奇点
控制理论(社会学)
平衡(能力)
步态
职位(财务)
康复机器人
基质(化学分析)
模式(计算机接口)
反向动力学
机器人
路径(计算)
人工智能
动平衡
弹道
方向(向量空间)
机器人运动学
一致性(知识库)
模拟
控制工程
反向
曲率
变换矩阵
坐标系
转化(遗传学)
加速度
拓扑(电路)
受电弓
算法
表征(材料科学)
作者
Diego Paúl,Erik Macho,Francisco J. Campa,Saioa Herrero,Mikel Díez,Javier Corral,Charles Pinto
标识
DOI:10.1016/j.mechmachtheory.2025.106328
摘要
• BALANCE robotic device is proposed for human balance and gait rehabilitation. • Analysis of a new parallel manipulator capable of providing BALANCE trajectories. • Presentation of a simpler approach for singularity identification. • Geometric characterization of the singularities for working mode selection. This paper presents a novel device for the rehabilitation of balance and gait functions in patients with neurological disorders. The device is composed of two sensorized footplates, one for each foot of the patient, which are driven by two identical 4-DOF parallel manipulators. The mobility and kinematic analyses of this new parallel manipulator are conducted for the first time, including the resolution of the inverse position problem and the formulation of the overall Jacobian matrix. Then, a simplification of the kinetostatic problem is proposed, which not only reduces the computational cost but also leads to a reduced matrix that enhances the singularity analysis process. Using this matrix and placing emphasis on the geometric interpretation of the singularity conditions, a thorough characterization of them is carried out, which has proven useful for the working mode selection and for visual verification of the rehabilitation trajectories proposed in the path planning process. The paper concludes with the presentation of a prototype intended to validate the usefulness of this device in the rehabilitation field.
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