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Efficient Shortest Path Finding of k-Nearest Neighbor Objects in Road Network Databases

机译:道路网络数据库中k最近邻对象的高效路径查找

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This paper addresses an efficient path finding scheme that complements classic k-NN (Nearest Neighbor) queries for the road network. Aiming at finding both k objects and the shortest paths to them at the same time, this paper first selects candidate objects by the fc-NN search scheme based on the underlying index structure and then finds the path to each of them by the modified A~* algorithm. The path finding step stores the intermediary paths from the query point to all of the scanned nodes and then attempts to match the common segment with a path to a new node, instead of repeatedly running the A~* algorithm for all k points. Additionally, the cost to the each object calculated in this step makes it possible to finalize the k objects from the candidate set as well as to order them by the path cost. Judging from the result, the proposed scheme can eliminate redundant node scans and provide one of the most fundamental building blocks for location-based services in the real-life road network.
机译:本文解决了一个有效的路径查找方案,它补充了道路网络的经典K-NN(最近邻居)查询。旨在同时找到k对象和对它们的最短路径,本文首先根据基础索引结构选择FC-NN搜索方案的候选对象,然后通过修改的A〜〜 * 算法。寻找步骤存储从查询点中间路径,以所有扫描节点,然后尝试的路径与路径的公共段匹配到一个新的节点,而不是反复运行A *算法对于所有的k点。另外,在该步骤中计算的每个对象的成本使得可以从候选集中完成K对象以及通过路径成本来订购它们。从结果判断,所提出的方案可以消除冗余节点扫描,并为现实路线网络中的基于位置的服务提供最基本的构建块之一。

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