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An experimental study of resolved acceleration control in singularities: damped least-squares approach

机译:奇异点分解加速度控制的实验研究:阻尼最小二乘法

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In this paper the application of the damped least-squares method to the resolved-acceleration control is experimentally examined on a 2-DOF planar manipulator In order to decrease the position error introduced by the damping, only small singular values are damped. The symbolical expressions of the singular value decomposition of the Jacobian matrix were utilized in order to decrease the computational burden. Position error along the work-space boundary was only 15% greater than along the trajectories inside the reachable workspace.
机译:在本文中,在2自由度平面操纵器上实验研究了阻尼最小二乘法在分辨加速控制中的应用。为了减少阻尼引起的位置误差,仅对小奇异值进行了阻尼。为了减少计算负担,利用了雅可比矩阵的奇异值分解的符号表达式。沿工作空间边界的位置误差仅比沿可到达工作空间内的轨迹的误差大15%。

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