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An indexing structure and application model for vehicles moving on road networks.

机译:道路网络上车辆的索引结构和应用模型。

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摘要

Moving objects database systems are the most challenging sub-category among Spatio-Temporal database systems. A database system that updates in real-time the location information of GPS-equipped moving vehicles has to meet even stricter requirements. Currently existing data storage models and indexing mechanisms work well only when the number of moving objects in the system is relatively small. This dissertation research aimed at the real-time tracking and history retrieval of massive numbers of vehicles moving on road networks. A total solution has been provided for the real-time update of the vehicles' location and motion information, range queries on current and history data, and prediction of vehicles' movement in the near future.;To achieve these goals, a new approach called Segmented Time Associated to Partitioned Space (STAPS) was first proposed in this dissertation for building and manipulating the indexing structures for moving objects databases.;Applying the STAPS approach, an indexing structure of associating a time interval tree to each road segment was developed for real-time database systems of vehicles moving on road networks. The indexing structure uses affordable storage to support real-time data updates and efficient query processing. The data update and query processing performance it provides is consistent without restrictions such as a time window or assuming linear moving trajectories.;An application system design based on distributed system architecture with centralized organization was developed to maximally support the proposed data and indexing structures. The suggested system architecture is highly scalable and flexible. Finally, based on a real-world application model of vehicles moving in region-wide, main issues on the implementation of such a system were addressed.
机译:在时空数据库系统中,移动对象数据库系统是最具挑战性的子类别。实时更新配备GPS的移动车辆的位置信息的数据库系统必须满足更严格的要求。当前,只有当系统中移动的对象数量相对较少时,现有的数据存储模型和索引机制才能很好地工作。本文的研究旨在对道路网络上大量车辆的实时跟踪和历史检索。提供了一种整体解决方案,用于实时更新车辆的位置和运动信息,对当前和历史数据进行范围查询以及在不久的将来预测车辆的运动。为了实现这些目标,一种新的方法称为本文首先提出了与空间分割相关的分割时间(STAPS),用于建立和处理运动对象数据库的索引结构。通过应用STAPS方法,开发了一种将时间间隔树与每个路段相关联的索引结构。道路网络上的车辆的实时数据库系统。索引结构使用负担得起的存储来支持实时数据更新和有效的查询处理。它提供的数据更新和查询处理性能是一致的,不受时间窗口或线性移动轨迹的限制。;开发了基于具有集中组织的分布式系统架构的应用系统设计,以最大程度地支持所提出的数据和索引结构。建议的系统架构具有高度的可伸缩性和灵活性。最后,基于在区域范围内行驶的车辆的实际应用模型,解决了有关实施此系统的主要问题。

著录项

  • 作者

    Ye, Xiangyu.;

  • 作者单位

    Florida International University.;

  • 授予单位 Florida International University.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 142 p.
  • 总页数 142
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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