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首页> 外文期刊>Journal of Advanced Computatioanl Intelligence and Intelligent Informatics >Pointing Device Based on Estimation of Trajectory and Shape of a Human Hand in a Monocular Image Sequence
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Pointing Device Based on Estimation of Trajectory and Shape of a Human Hand in a Monocular Image Sequence

机译:基于单眼图像序列中人手轨迹和形状估计的定点设备

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摘要

Pointing devices are essential components of graphical user interfaces, and the mouse in particular is widely used because of its intuitive and easy operation. Since it must be directly touched by the user, however, the mouse is restricted in the locations where it can be used. A pointing device consists of a pointing mechanism and a switching mechanism, so the use of a non-contact device to carry out these actions should remove the restriction concerning location. In this study, we investigate the construction of a pointing device that does not impart a feeling of restraint or awkwardness, which estimates the user's hand shape and position from images captured by a monocular camera, a noncontact device. In this system, the captured image is transformed from a Cartesian coordinate system to a log-polar system to reduce image data and computational cost, and achieve real-time operation without using special hardware other than a regular camera. Higher order local autocorrelation features of the log-polar coordinate space were used to achieve robustness against background change and hand rotation. In addition to direct pointing, the ability to recognize gestures from the hand's motion trajectory was incorporated to achieve more comfortable user-computer interaction. In experiments using a system consisting of a regular computer and digital video camera, tracking of the hand and estimation of symbolic signs from extracted frames was stable at a practical average speed of 30 ms per frame.
机译:指点设备是图形用户界面的基本组件,尤其是鼠标,因为其直观且易于操作而被广泛使用。但是,由于必须由用户直接触摸鼠标,因此鼠标被限制在可以使用的位置。指示设备由指示机构和切换机构组成,因此使用非接触设备执行这些操作应消除有关位置的限制。在这项研究中,我们研究了一种不会给人束缚或尴尬感的指示设备,该设备会根据单眼相机(一种非接触设备)拍摄的图像来估算用户的手形和位置。在该系统中,将捕获的图像从笛卡尔坐标系转换为对数极坐标系,以减少图像数据和计算成本,并且无需使用常规摄像机以外的特殊硬件即可实现实时操作。对数极坐标空间的高阶局部自相关特征用于实现针对背景变化和手旋转的鲁棒性。除了直接指向之外,还具有从手的运动轨迹识别手势的功能,以实现更舒适的用户计算机交互。在使用由常规计算机和数码摄像机组成的系统进行的实验中,手的跟踪和从提取的帧中估计符号的估计在每帧30 ms的实际平均速度下是稳定的。

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