Chaves-Diéguez David, Pellitero-Rivero Alexandre, García-Coego Daniel, González-Castaño Francisco Javier, Rodríguez-Hernández Pedro Salvador, Piñeiro-Gómez Óscar, Gil-Castiñeira Felipe, Costa-Montenegro Enrique
AtlantTIC, Universidade de Vigo, Rúa Maxwell S/N, 36310 Vigo, Spain.
Galician Research and Development Center in Advanced Telecommunications (GRADIANT), Edif. CITEXVI local 14, Campus Universitario de Vigo, 36310 Vigo, Spain.
Sensors (Basel). 2015 Jul 3;15(7):16083-104. doi: 10.3390/s150716083.
Smart cities are expected to improve the quality of life of citizens by relying on new paradigms, such as the Internet of Things (IoT) and its capacity to manage and interconnect thousands of sensors and actuators scattered across the city. At the same time, mobile devices widely assist professional and personal everyday activities. A very good example of the potential of these devices for smart cities is their powerful support for intuitive service interfaces (such as those based on augmented reality (AR)) for non-expert users. In our work, we consider a scenario that combines IoT and AR within a smart city maintenance service to improve the accessibility of sensor and actuator devices in the field, where responsiveness is crucial. In it, depending on the location and needs of each service, data and commands will be transported by an urban communications network or consulted on the spot. Direct AR interaction with urban objects has already been described; it usually relies on 2D visual codes to deliver object identifiers (IDs) to the rendering device to identify object resources. These IDs allow information about the objects to be retrieved from a remote server. In this work, we present a novel solution that replaces static AR markers with dynamic markers based on LED communication, which can be decoded through cameras embedded in smartphones. These dynamic markers can directly deliver sensor information to the rendering device, on top of the object ID, without further network interaction.
智慧城市有望依靠新的范式,如物联网(IoT)及其管理和互连散布在城市各处的数千个传感器和执行器的能力,来提高市民的生活质量。与此同时,移动设备广泛辅助专业和个人的日常活动。这些设备在智慧城市方面潜力的一个很好例子是它们对非专业用户直观服务界面(如基于增强现实(AR)的界面)的强大支持。在我们的工作中,我们考虑了一种在智慧城市维护服务中结合物联网和增强现实的场景,以提高现场传感器和执行器设备的可及性,其中响应能力至关重要。在这种场景中,根据每项服务的位置和需求,数据和命令将通过城市通信网络传输或在现场查询。与城市物体的直接增强现实交互已经有过描述;它通常依靠二维视觉代码将物体标识符(ID)传送到渲染设备以识别物体资源。这些标识符允许从远程服务器检索有关物体的信息。在这项工作中,我们提出了一种新颖的解决方案,用基于LED通信的动态标记取代静态增强现实标记,这种标记可以通过智能手机中嵌入的摄像头进行解码。这些动态标记除了物体ID之外,还可以直接将传感器信息传送到渲染设备,而无需进一步的网络交互。