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Making any planar surface into a touch-sensitive display by a mere projector and camera

机译:只需投影仪和照相机,即可将任何平面表面变成触敏显示器

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We address how an HCI (Human-Computer Interface) with small device size, large display, and touch input facility can be made possible by a mere projector and camera. The realization is through the use of a properly embedded structured light sensing scheme that enables a regular light-colored table surface to serve the dual roles of both a projection screen and a touch-sensitive display surface. A random binary pattern is employed to code structured light in pixel accuracy, which is embedded into the regular projection display in a way that the user perceives only regular display but not the structured pattern hidden in the display. With the projection display on the table surface being imaged by a camera, the observed image data, plus the known projection content, can work together to probe the 3D world immediately above the table surface, like deciding if there is a finger present and if the finger touches the table surface, and if so at what position of the table surface the finger tip makes the contact. All the decisions hinge upon a careful calibration of the projector-camera-table surface system, intelligent segmentation of the hand in the image data, and exploitation of the homography mapping existing between the projector's display panel and the camera's image plane. Extensive experimentation including evaluation of the display quality, touch detection accuracy, and system efficiency are shown to illustrate the feasibility of the proposed realization.
机译:我们解决了仅通过投影仪和照相机就可以实现具有小设备尺寸,大显示屏和触摸输入功能的HCI(人机界面)的问题。该实现是通过使用适当嵌入的结构化光感测方案实现的,该方案使常规的浅色桌子表面能够同时充当投影屏幕和触敏显示表面的双重角色。采用随机二进制模式以像素精度对结构化光进行编码,以用户仅感知常规显示而不感知隐藏在显示器中的结构化模式的方式将其嵌入到常规投影显示器中。借助照相机对桌子表面上的投影显示进行摄像,观察到的图像数据以及已知的投影内容可以一起工作,以探测桌子表面正上方的3D世界,例如确定是否存在手指以及是否手指手指触摸桌子表面,如果这样,则指尖在桌子表面的哪个位置进行接触。所有决定都取决于对投影仪-相机-桌面系统的仔细校准,图像数据中手的智能分割以及对在投影仪的显示面板和相机的图像平面之间存在的单应性映射的利用。展示了包括评估显示质量,触摸检测精度和系统效率在内的大量实验,以说明所提出的实现的可行性。

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