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All that GLITTERs: Low-Power Spoof-Resilient Optical Markers for Augmented Reality

机译:所有这些闪光器:用于增强现实的低功耗防伪光学标记

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One of the major challenges faced by Augmented Reality (AR) systems is linking virtual content accurately on physical objects and locations. This problem is amplified for applications like mobile payment, device control or secure pairing that requires authentication. In this paper, we present an active LED tag system called GLITTER that uses a combination of Bluetooth Low-Energy (BLE) and modulated LEDs to anchor AR content with no a priori training or labeling of an environment. Unlike traditional optical markers that encode data spatially, each active optical marker encodes a tag’s identifier by blinking over time, improving both the tag density and range compared to AR tags and QR codes.We show that with a low-power BLE-enabled micro-controller and a single 5 mm LED, we are able to accurately link AR content from potentially hundreds of tags simultaneously on a standard mobile phone from as far as 30 meters. Expanding upon this, using active optical markers as a primitive, we show how a constellation of active optical markers can be used for full 3D pose estimation, which is required for many AR applications, using either a single LED on a planar surface or two or more arbitrarily positioned LEDs. Our design supports 108 unique codes in a single field of view with a detection latency of less than 400 ms even when held by hand.
机译:增强现实(AR)系统面临的主要挑战之一是将虚拟内容准确地链接到物理对象和位置上。对于诸如移动支付,设备控制或需要身份验证的安全配对之类的应用程序,此问题更加严重。在本文中,我们介绍了一种称为GLITTER的有源LED标签系统,该系统结合了蓝牙低功耗(BLE)和调制LED来锚定AR内容,而无需事先培训或标记环境。与传统的光学标记不同,该光学标记在空间上对数据进行编码,而每个有源光学标记都通过随时间闪烁来编码标签的标识符,与AR标签和QR码相比,标签的密度和范围都得到了改善。控制器和单个5毫米LED指示灯,我们能够在30米远的标准手机上同时准确链接可能来自数百个标签的AR内容。在此基础上扩展,使用有源光学标记作为基元,我们展示如何将有源光学标记的星座用于完整的3D姿态估计,这对于许多AR应用而言都是必需的,使用平面上的单个LED或两个或两个LED即可。任意放置的LED。我们的设计在单个视野中支持108个唯一代码,即使用手握住,其检测延迟也不到400毫秒。

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