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首页> 外文期刊>Computer-Aided Civil and Infrastructure Engineering >Plane Registration Leveraged by Global Constraints for Context-Aware AEC Applications
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Plane Registration Leveraged by Global Constraints for Context-Aware AEC Applications

机译:利用全局约束为上下文感知的AEC应用程序提供平面注册

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摘要

In this article, we propose a new registration algorithm and computing framework, the KEG tracker, for estimating a camera's position and orientation for a general class of mobile context-aware applications in Architecture, Engineering, and Construction (AEC). By studying two classic natural marker-based registration algorithms, Homography-from-detection and Homography-from-tracking, and by overcoming their specific limitations of jitter and drift, our method applies two global constraints (geometric and appearance) to prevent tracking errors from propagating between consecutive frames. The proposed method is able to achieve an increase in both stability and accuracy, while being fast enough for real-time applications. Experiments on both synthesized and real-world test cases demonstrate that our method is superior to existing state-of-the-art registration algorithms. The article also explores several AEC applications of our method in context-aware computing and desktop-augmented reality.
机译:在本文中,我们提出了一种新的注册算法和计算框架,即KEG跟踪器,用于为建筑,工程和建设(AEC)中通用类别的移动情景感知应用程序估计摄像机的位置和方向。通过研究两种经典的基于自然标记的配准算法,即“从检测全息图”和“从跟踪全息图”,并克服了抖动和漂移的特定限制,我们的方法应用了两个全局约束(几何和外观)来防止跟踪误差在连续帧之间传播。所提出的方法能够实现稳定性和准确性的提高,同时对于实时应用足够快。在综合测试案例和实际测试案例中进行的实验表明,我们的方法优于现有的最新注册算法。本文还探讨了我们的方法在上下文感知计算和桌面增强现实中的几种AEC应用程序。

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