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    • 4. 发明授权
    • Robot control methods
    • 机器人控制方法
    • US09254568B2
    • 2016-02-09
    • US14153302
    • 2014-01-13
    • Samsung Electronics Co., Ltd.
    • Ji Young KimKwang Kyu LeeWoong KwonKyung Shik RohJu Suk LeeSeung Yong Hyung
    • G05B19/41B25J9/16
    • B25J9/1625G05B2219/40299Y10S901/16
    • A robot control method of controlling a robot that has a flexible module including ‘n’ first nodes participating in pan motion and ‘n’ second nodes participating in tilt motion may include: measuring a translational motion distance, a pan motion angle, and a tilt motion angle of the flexible module; calculating state vectors of the ‘n’ first nodes and the ‘n’ second nodes using the measured translational motion distance; calculating operating angle distribution rates of the ‘n’ first nodes and operating angle distribution rates of the ‘n’ second nodes using the calculated state vectors of the ‘n’ first nodes and the calculated state vectors of the ‘n’ second nodes; and/or calculating operating angles of the ‘n’ first nodes and operating angles of the ‘n’ second nodes using the calculated operating angle distribution rates and the measured pan motion angle and tilt motion angle.
    • 控制机器人的机器人控制方法包括:测量平移运动距离,平移运动角度和俯仰角度的柔性模块,该柔性模块包括参与平移运动的第一节点和第n节点参与倾斜运动 柔性模块的运动角度; 使用测量的平移运动距离计算'n'个第一节点和'n'个第二节点的状态向量; 使用“n”个第一节点的计算状态矢量和“n”个第二节点的计算状态向量来计算'n'个第一节点的运行角分布率和'n'个第二节点的操作角分布率; 和/或使用所计算的操作角分布速率和测量的平移运动角度和倾斜运动角度来计算'n'个第一节点的运动角度和'n'个第二节点的操作角度。
    • 7. 发明授权
    • Robot and control method thereof
    • 机器人及其控制方法
    • US09122275B2
    • 2015-09-01
    • US13738409
    • 2013-01-10
    • SAMSUNG ELECTRONICS CO., LTD.
    • Ji Young KimKwang Kyu LeeYoung Do KwonKyung Shik Roh
    • G05D3/00B25J9/00B25J9/16
    • G05D3/00B25J9/00B25J9/16B25J9/1612G05B2219/39486G05B2219/40407Y10S901/14Y10S901/27
    • A robot and method of controlling the same are provided. The robot includes a hand and an arm, a grip sensor unit configured to enable the hand to sense an object, a grip control unit configured to determine whether the hand grips the object from gripping information obtained from the grip sensor unit, select an object-based coordinate to control the hand and the arm based on a motion of the object or an independent coordinate to independently control the hand and the arm according to a result of the determination, and control the hand and the arm based on the selected coordinate, and a coordinate transformation unit configured to calculate a position and a direction of a virtual object based on the object-based coordinate, and deliver information about the position and the direction of the virtual object calculated to the grip control unit.
    • 提供了一种机器人及其控制方法。 所述机器人包括手和手臂,配置成能够使手感测物体的抓握传感器单元,配置成确定手抓住物体是否夹持从握持传感器单元获得的信息的抓握控制单元, 基于所述对象的运动或独立坐标来控制所述手和所述手臂,以根据所述确定的结果独立地控制所述手和所述手臂,并且基于所选择的坐标来控制所述手和所述手臂,以及 坐标变换单元,被配置为基于所述基于对象的坐标来计算虚拟对象的位置和方向,并且将关于所计算的所述虚拟对象的位置和方向的信息传递给所述握持控制单元。
    • 8. 发明申请
    • ROBOT AND CONTROL METHOD THEREOF
    • 机器人及其控制方法
    • US20130178978A1
    • 2013-07-11
    • US13738409
    • 2013-01-10
    • SAMSUNG ELECTRONICS CO., LTD.
    • Ji Young KIMKwang Kyu LeeYoung Do KwonKyung Shik Roh
    • G05D3/00
    • G05D3/00B25J9/00B25J9/16B25J9/1612G05B2219/39486G05B2219/40407Y10S901/14Y10S901/27
    • A robot and method of controlling the same are provided. The robot includes a hand and an arm, a grip sensor unit configured to enable the hand to sense an object, a grip control unit configured to determine whether the hand grips the object from gripping information obtained from the grip sensor unit, select an object-based coordinate to control the hand and the arm based on a motion of the object or an independent coordinate to independently control the hand and the arm according to a result of the determination, and control the hand and the arm based on the selected coordinate, and a coordinate transformation unit configured to calculate a position and a direction of a virtual object based on the object-based coordinate, and deliver information about the position and the direction of the virtual object calculated to the grip control unit.
    • 提供了一种机器人及其控制方法。 所述机器人包括手和手臂,配置成能够使手感测物体的抓握传感器单元,配置成确定手抓住物体是否夹持从握持传感器单元获得的信息的抓握控制单元, 基于所述对象的运动或独立坐标来控制所述手和所述手臂,以根据所述确定的结果独立地控制所述手和所述手臂,并且基于所选择的坐标来控制所述手和所述手臂,以及 坐标变换单元,被配置为基于所述基于对象的坐标来计算虚拟对象的位置和方向,并且将关于所计算的所述虚拟对象的位置和方向的信息传递给所述握持控制单元。