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THE DIMENSIONAL SYNTHESIS OF THE LINEAR DELTA ROBOT FOR A FORCE-FEEDBACK DEVICE

机译:用于力反馈装置的线性Δ机器人的尺寸合成

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We perform the dimensional synthesis of a parallel manipulator to be used as a force-feedback device in a virtual reality application for surgeon training in prostate brachytherapy. For such brachytherapy operations, the characteristics of the required workspace point towards the architecture of the linear DELTA robot to be used as the force-feedback device to the surgeon. In this paper, we address the dimensional synthesis of the linear DELTA robot for the prescribed workspace. To this end, we propose the minimum relative kinematic sensitivity as an objective function, a kinematic performance index that is different from most of the commonly used metrics, i.e., manipulability and dexterity. The minimum relative kinematic sensitivity represents the ratio of the minimum to the maximum effect of a unitybounded set of actuator displacements on the moving-platform pose. These extremum sensitivities are computed independently over the prescribed workspace. Thence, the dimensional synthesis problem consists in finding the robot dimensions that maximize the minimum relative kinematic sensitivity, so it is guaranteed within a narrow interval over the prescribed workspace. This optimization problem is nonconvex, which poses a challenge from the computational point of view. However, because of symmetry in the mechanism and other simplifications, the number of optimization variables is reduced to four. This allows a reasonably fine discretization of the search domain, giving the designers confidence that the ensuing local optimum is close to the global optimum.
机译:我们执行并行机械手的尺寸合成,以用作前列腺近距离放射治疗的外科医生培训的虚拟现实应用中的力 - 反馈装置。对于这种近距离放射治疗操作,所需工作区的特性朝向外科医生用作力反馈装置的线性Δ机器人的架构。在本文中,我们解决了规定工作空间的线性Δ机器人的尺寸合成。为此,我们提出了最小相对运动敏感性作为目标函数,具有与大多数常用度量的运动性能指标,即可操纵性和灵活性。最小相对运动敏感性表示最小值与移动平台姿势上单个致动器位移的最大效果的比率。这些极值敏感性在规定的工作空间中独立计算。因此,尺寸综合问题包括找到最大化最小相对运动敏感性的机器人尺寸,因此在规定的工作空间中保证在窄间隔内。这种优化问题是非核解,它从计算的角度带来了挑战。然而,由于机制和其他简化中的对称性,优化变量的数量减少到四。这允许搜索域的合理性离散化,使设计人员能够置信,即随后的局部最优接近全球最佳。

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