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A pyramid-based approach to visual exploration of a large volume of vehicle trajectory data

机译:基于金字塔的方法对大量车辆轨迹数据进行视觉探索

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Advances in positioning and wireless communicating technologies make it possible to collect large volumes of trajectory data of moving vehicles in a fast and convenient fashion. These data can be applied to traffic studies. Behind this application, a methodological issue that still requires particular attention is the way these data should be spatially visualized. Trajectory data physically consists of a large number of positioning points. With the dramatic increase of data volume, it becomes a challenge to display and explore these data. Existing commercial software often employs vector-based indexing structures to facilitate the display of a large volume of points, but their performance downgrades quickly when the number of points is very large, for example, tens of millions. In this paper, a pyramid-based approach is proposed. A pyramid method initially is invented to facilitate the display of raster images through the tradeoff between storage space and display time. A pyramid is a set of images at different levels with different resolutions. In this paper, we convert vector-based point data into raster data, and build a gridbased indexing structure in a 2D plane. Then, an image pyramid is built. Moreover, at the same level of a pyramid, image is segmented into mosaics with respect to the requirements of data storage and management. Algorithms or procedures on grid-based indexing structure, image pyramid, image segmentation, and visualization operations are given in this paper. A case study with taxi trajectory data in Shanghai is conducted. Results demonstrate that the proposed method outperforms the existing commercial software.
机译:定位和无线通信技术的进步使以快速便捷的方式收集移动车辆的大量轨迹数据成为可能。这些数据可以应用于交通研究。在此应用程序的背后,仍然需要特别注意的方法论问题是这些数据在空间上的可视化方式。轨迹数据实际上由大量定位点组成。随着数据量的急剧增加,显示和浏览这些数据成为一个挑战。现有的商业软件通常采用基于矢量的索引结构来促进大量点的显示,但是当点的数量非常大(例如数千万)时,它们的性能会迅速下降。在本文中,提出了一种基于金字塔的方法。最初发明了金字塔方法以通过存储空间和显示时间之间的折衷来促进光栅图像的显示。金字塔是一组具有不同分辨率的不同级别的图像。在本文中,我们将基于矢量的点数据转换为栅格数据,并在2D平面中构建基于网格的索引结构。然后,建立图像金字塔。此外,在金字塔的同一级别,根据数据存储和管理的要求,将图像分割成多个镶嵌图。本文给出了基于网格的索引结构,图像金字塔,图像分割和可视化操作的算法或过程。以上海出租车轨迹数据为例进行了研究。结果表明,所提出的方法优于现有的商业软件。

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