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OUTDOOR AR-APPLICATION FOR THE DIGITAL MAP TABLE

机译:户外AR应用为数字地图表

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In many fields today, it is necessary that a team has to do operational planning for a precise geographical location. Examples for this are staff work, the preparation of surveillance tasks at major events or state visits and sensor deployment planning for military and civil reconnaissance. For these purposes, Fraunhofer IOSB is developing the Digital Map Table (DigLT). When making important decisions, it is often helpful or even necessary to assess a situation on site. An augmented reality (AR) solution could be useful for this assessment. For the visualization of markers at specific geographical coordinates in augmented reality, a smartphone has to be aware of its position relative to the world. It is using the sensor data of the camera and inertial measurement unit (IMU) for AR while determining its absolute location and direction with the Global Navigation Satellite System (GNSS) and its magnetic compass. To validate the positional accuracy of AR markers, we investigated the current state of the art and existing solutions. A prototype application has been developed and connected to the DigLT. With this application, it is possible to place markers at geographical coordinates that will show up at the correct location in augmented reality at anyplace in the world. Additionally, a function was implemented that lets the user select a point from the environment in augmented reality, whose geographical coordinates are sent to the DigLT. The accuracy and practicality of the placement of markers were examined using geodetic reference points. As a result, we can conclude that it is possible to mark larger objects like a car or a house, but the accuracy mainly depends on the internal compass, which causes a rotational error that increases with the distance to the target.
机译:在今天的许多领域,一支球队必须进行精确地理位置的操作规划。这是工作人员工作,在主要事件或国家访问和传感器部署规划方面的监督任务的准备,用于军事和民事侦察。出于这些目的,Fraunhofer IOSB正在开发数字地图表(DIGLT)。在进行重要决策时,评估现场情况通常有助于甚至有必要。增强现实(AR)解决方案对该评估有用。对于在增强现实中的特定地理坐标上的标记可视化,智能手机必须了解其相对于世界的位置。它使用相机和惯性测量单元(IMU)的传感器数据,同时使用全球导航卫星系统(GNSS)及其磁指南针确定其绝对位置和方向。为了验证AR标记的位置准确性,我们调查了现有技术和现有解决方案的当前状态。已经开发了原型应用并连接到DIGLT。通过本申请,可以将标记放在地理坐标上,该标记将在世界上任何地方的增强现实中出现的正确位置。另外,实现了一种函数,其允许用户从增强现实中从环境中选择一个点,其地理坐标被发送到DIGLT。使用大地测量参考点检查标记放置的准确性和实用性。因此,我们可以得出结论,可以将更大的物体标记为汽车或房屋,但准确性主要取决于内部罗盘,这导致旋转误差随着目标的距离而增加。

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