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Philosophies and technologies for ambient aware devices in wearable computing grids

机译:可穿戴计算网格中环境感知设备的理念和技术

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摘要

In this paper we treat design philosophies and enabling technologies for ambient awareness within grids of future mobile computing/communication devices. We extensively describe the possible context sensors, their required accuracies, their use in mobile services―possibly leading to background interactions of user devices―as well as a draft of their integration into an ambient aware device. We elaborate on position sensing as one of the main aspects of context aware systems. We first describe a maximum accuracy setup for a mobile user that has the ability of Augmented Reality for indoor and outdoor applications. We then focus on a set-up for pose sensing of a mobile user, based on the fusion of several inertia sensors and DGPS. We describe the anchoring of the position of the user by using visual tracking, using a camera and image processing. We describe our experimental set-up with a background process that, once initiated by the DGPS system, continuously looks in the image for visual clues and―when found―tries to track them, to continuously adjust the inertial sensor system. We present some results of our combined inertia tracking and visual tracking system; we are able to track device rotation and position with an update rate of 10 ms with an accuracy for the rotation of about two degrees, whereas head position accuracy is in the order of a few cm at a visual clue distance of less than 3 m.
机译:在本文中,我们将探讨未来移动计算/通信设备网格中的设计理念和使环境感知技术成为可能。我们广泛描述了可能的上下文传感器,它们要求的精度,它们在移动服务中的使用(可能导致用户设备的后台交互)以及它们集成到环境感知设备中的草案。我们将位置感知作为上下文感知系统的主要方面之一进行详细说明。我们首先为移动用户描述一种具有室内和室外应用增强现实能力的最大精度设置。然后,我们基于几种惯性传感器和DGPS的融合,着重研究用于移动用户的姿势感测的设置。我们通过使用视觉跟踪,使用相机和图像处理来描述用户位置的定位。我们用一个背景过程来描述我们的实验装置,该过程一旦由DGPS系统启动,便会连续在图像中寻找视觉线索,并在找到线索后设法对其进行跟踪,以不断调整惯性传感器系统。我们介绍了结合惯性跟踪和视觉跟踪系统的一些结果;我们能够以10毫秒的更新速率跟踪设备的旋转和位置,并且旋转的精度约为2度,而在视觉线索距离小于3 m的情况下,头部位置的精度约为几厘米。

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