Device and method for dynamic reconfiguration of robot components
    2.
    发明授权
    Device and method for dynamic reconfiguration of robot components 有权
    机器人部件动态重构的装置和方法

    公开(公告)号:US09415505B2

    公开(公告)日:2016-08-16

    申请号:US13739186

    申请日:2013-01-11

    Abstract: A device for dynamic reconfiguration of robot components includes: a resource monitoring unit for monitoring resources of a plurality of boards on which components for executing tasks of a robot are loaded; a dynamic reconfiguration unit for dynamically reconfiguring components of the boards, in the case at least one of the boards is at a risk for a scarcity of resources; and a log managing unit for storing a configuration of present components and a configuration of reconfigured components. Accordingly, it is possible to recognize a scarcity of resources in advance while the robot is operating and prevent the robot from malfunctioning by distributing the components.

    Abstract translation: 一种用于机器人组件的动态重新配置的装置,包括:资源监控单元,用于监视多个板的资源,其上加载用于执行机器人任务的组件; 动态重新配置单元,用于动态重新配置电路板的组件,在这些情况下,至少一个电路板面临资源稀缺的风险; 以及用于存储当前组件的配置和重新配置的组件的配置的日志管理单元。 因此,可以在机器人操作时预先识别资源稀缺,并且通过分配组件来防止机器人发生故障。

    Remote collaboration system with projector-camera based robot device and head mounted display, and remote interaction method using the same

    公开(公告)号:US10250845B1

    公开(公告)日:2019-04-02

    申请号:US16039436

    申请日:2018-07-19

    Abstract: In a remote interaction method performed by a remote collaboration system comprising a robot device and a head mounted display, the robot device is located in a remote space and comprising a projector, a panoramic camera and a high resolution camera. The head mounted display is located in a local space apart from the remote space. A communication between the robot device and the head mounted display is established based on a communication request. The remote space is observed by the head mounted display based on first image information and second image information. The first image information is collected by the panoramic camera and received from the robot device. The second image information is collected by the high resolution camera and received from the robot device. Necessary information to be provided to the remote space is searched by the head mounted display based on a result of observing the remote space. The necessary information received from the head mounted display is provided by the robot device to the remote space using the projector.

    Specular and diffuse image generator using polarized light field camera and control method thereof
    4.
    发明授权
    Specular and diffuse image generator using polarized light field camera and control method thereof 有权
    使用偏振光场照相机的镜面和漫射图像发生器及其控制方法

    公开(公告)号:US09325886B2

    公开(公告)日:2016-04-26

    申请号:US14220574

    申请日:2014-03-20

    CPC classification number: H04N5/2254 G02B5/20 G02B5/30 G02B27/0075

    Abstract: An image generator is provided which obtains a specular image and a diffuse image from an image acquired by a polarized light field camera by separating two reflection components of a subject, and a control method thereof. The image generator may include a main lens, a polarizing filter part, a photosensor, a microlens array, and a controller that generates a single image in response to the electrical image signal and extracts, from the generated image, a specular image and a diffuse image that exhibit different reflection characteristics of the subject.

    Abstract translation: 提供一种图像发生器,其通过分离被摄体的两个反射分量从由偏振光场照相机获取的图像及其控制方法获得镜面图像和漫射图像。 图像生成器可以包括主透镜,偏振滤光器部分,光电传感器,微透镜阵列和响应于电图像信号生成单个图像的控制器,并从生成的图像中提取镜面图像和漫反射 呈现主体不同反射特征的图像。

    Method of reconstructing three-dimensional facial shape
    5.
    发明授权
    Method of reconstructing three-dimensional facial shape 有权
    重建三维面部形状的方法

    公开(公告)号:US08903139B2

    公开(公告)日:2014-12-02

    申请号:US13757057

    申请日:2013-02-01

    CPC classification number: G06K9/00281 G06K9/00201 G06T3/4053 G06T17/00

    Abstract: A method of reconstructing a three-dimensional (3D) facial shape with super resolution even from a short moving picture having a front facial image by acquiring a super-resolution facial image by applying, as a weighting factor, a per-unit-patch similarity between a target frame and frames remaining after excluding the target frame from among a plurality of continuous frames including the front facial image, and reconstructing the 3D facial shape based on the acquired super-resolution facial image.

    Abstract translation: 一种即使从具有前脸部图像的短动态图像中通过采用超分辨率面部图像来重构三维(3D)面部形状的方法,通过以加权因子的形式应用每单位贴片相似度 在从包括前脸部图像的多个连续帧中排除目标帧之后剩余的帧与目标帧之间,并且基于获取的超分辨率面部图像重建3D面部形状。

    REMOTE COLLABORATION SYSTEM WITH PROJECTOR-CAMERA BASED ROBOT DEVICE AND HEAD MOUNTED DISPLAY, AND REMOTE INTERACTION METHOD USING THE SAME

    公开(公告)号:US20190124294A1

    公开(公告)日:2019-04-25

    申请号:US16039436

    申请日:2018-07-19

    Abstract: In a remote interaction method performed by a remote collaboration system comprising a robot device and a head mounted display, the robot device is located in a remote space and comprising a projector, a panoramic camera and a high resolution camera. The head mounted display is located in a local space apart from the remote space. A communication between the robot device and the head mounted display is established based on a communication request. The remote space is observed by the head mounted display based on first image information and second image information. The first image information is collected by the panoramic camera and received from the robot device. The second image information is collected by the high resolution camera and received from the robot device. Necessary information to be provided to the remote space is searched by the head mounted display based on a result of observing the remote space. The necessary information received from the head mounted display is provided by the robot device to the remote space using the projector.

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