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磁场与视觉共融的多模态胶囊机器人人机交互控制 被引量:4
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作者 张永顺 杨慧远 《机器人》 EI CSCD 北大核心 2018年第1期72-80,共9页
为了实现磁驱动胶囊内窥镜基于定点悬停调姿的全景观察,提出一种欠驱动双半球胶囊机器人,突破了悬停调姿与滚动行走双重工作模态转换关键技术.为了在肠道弯曲环境内实现滚动行走,提出与视觉相融合的空间万向旋转磁场人机交互控制策略.... 为了实现磁驱动胶囊内窥镜基于定点悬停调姿的全景观察,提出一种欠驱动双半球胶囊机器人,突破了悬停调姿与滚动行走双重工作模态转换关键技术.为了在肠道弯曲环境内实现滚动行走,提出与视觉相融合的空间万向旋转磁场人机交互控制策略.理论上,依据正交变换推得经纬坐标系下以磁场轴线的侧摆角与俯仰角为独立变量的三相电流形式空间万向旋转磁场叠加公式,完成控制变量降维与解耦,实现磁场轴线沿侧摆或俯仰方向的单独调整;实践上,通过磁矩随动效应带动双半球形胶囊机器人摄像头分别实现侧摆与俯仰2个方向的独立扫描,使机器人轴线对准各段肠道弯曲方向,沿弯曲方向施加滚动磁矩实现胶囊机器人滚动转弯.最后,采用离体猪大肠模拟环境验证人机交互性能.试验表明,通过结合弯曲肠道图像与磁场方位的人机交互控制,既能实现双半球形胶囊机器人在被动模态下的姿态任意调整与全景观察,也能实现在主动模态下沿弯曲环境的滚动行走. 展开更多
关键词 双半球胶囊机器人 多模态转换 空间万向旋转磁场 正交变换 人机交互
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Orthogonal transformation operation theorem of a spatial universal uniform rotating magnetic field and its application in capsule endoscopy 被引量:9
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作者 ZHANG YongShun YU ZiChun +2 位作者 YANG HuiYuan HUANG YunKui CHEN Jun 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第6期854-864,共11页
According to the anti-phase sine current superposition theorem, the orientation, the magnetic flux density, the angular speed and the rotational direction of the spatial universal rotating magnetic field (SURMF) can... According to the anti-phase sine current superposition theorem, the orientation, the magnetic flux density, the angular speed and the rotational direction of the spatial universal rotating magnetic field (SURMF) can be controlled within the tri-axial orthogonal square Helmholtz coils (TOSHC). Nevertheless, three coupling direction angles of the normal vector of the SURMF in the Descartes coordinate system cannot be separately controlled, thus the adjustment of the orientation of the SURMF is difficult and the flexibility of the robotic posture control is restricted. For the dimension reduction and the decoupling of control variables, the orthogonal transformation operation theorem of the SURMF is proposed based on two independent rotation angular variables, which employs azimuth and altitude angles as two variables of the three-phase sine current superposition formula derived by the orthogonal rotation inverse transformation. Then the unique control rules of the orientation and the rotational direction of the SURMF are generalized in each spatial quadrant, thus the scanning of the normal vector of the SURMF along the horizontal or vertical direction can be achieved through changing only one variable, which simplifies the control process of the orientation of the SURMF greatly. To validate its feasibility and maneuverability, experiments were conducted in the animal intestine utilizing the innovative dual hemisphere capsule robot (DHCR) with active and passive modes. It was demonstrated that the posture adjustment and the steering rolling locomotion of the DHCR can be realized through single variable control, thus the orthogonal transformation operation theorem makes the control of the orientation of the SURMF convenient and flexible significantly. This breakthrough will lay a foundation for the human-machine interaction control of the SURMF. 展开更多
关键词 dual hemisphere capsule robot (DHCR) spatial universal rotating magnetic field (surmf) orthogonal transformation operation variable decoupling
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