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Processing of Continuous Location-Based Range Queries on Moving Objects in Road Networks

机译:道路网络中基于连续位置的运动对象范围查询的处理

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With the proliferation of mobile devices, an increasing number of urban users subscribe to location-based services. This trend has led to significant research interest in techniques that address two fundamental requirements: road network-based distance computation and the capability to process moving objects as points of interests. However, there exist few techniques that support both requirements simultaneously. To address these challenges, we propose a novel approach to process continuous range queries. We build on our previous work of an infrastructure that supports location-based snapshot queries on MOVing objects in road Networks (MOVNet). We introduce several significant features to enable continuous queries. The dual index structure that we proposed for MOVNet has been appropriately modified. We further appoint a number of connecting vertices in each cell and precompute the distances among them to expedite query processing. Most importantly, to alleviate the effects of frequent object updates, we introduce a Shortest-Distance-based Tree (SD-Tree). We illustrate that the network connectivity and distance information can be preserved and reused by the SD-Tree when the query point location is updated; hence, reducing the continuous query update cost. Our experimental results demonstrate that our method yields excellent performance with a very large number of moving objects.
机译:随着移动设备的激增,越来越多的城市用户订阅基于位置的服务。这种趋势已引起人们对满足以下两个基本要求的技术的研究兴趣:基于道路网络的距离计算以及将运动对象作为兴趣点进行处理的能力。但是,很少有技术可以同时支持这两个要求。为了解决这些挑战,我们提出了一种新颖的方法来处理连续范围查询。我们以基础架构的先前工作为基础,该基础架构支持对道路网络(MOVNet)中的MOVing对象进行基于位置的快照查询。我们引入了几个重要功能来实现连续查询。我们为MOVNet提出的双索引结构已被适当修改。我们进一步在每个像元中指定许多连接顶点,并预先计算它们之间的距离以加快查询处理。最重要的是,为了减轻频繁对象更新的影响,我们引入了基于最短距离的树(SD-Tree)。我们说明,当查询点位置更新时,SD-Tree可以保留并重新使用网络连接性和距离信息。因此,减少了连续查询更新的成本。我们的实验结果表明,我们的方法在大量移动物体的情况下具有出色的性能。

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