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Optimal-Location-Selection Query Processing in Spatial Databases

机译:空间数据库中的最佳位置选择查询处理

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摘要

This paper introduces and solves a novel type of spatial queries, namely, Optimal-Location-Selection (OLS) search, which has many applications in real life. Given a data object set D_A, a target object set D_B, a spatial region R, and a critical distance d_c in a multidimensional space, an OLS query retrieves those target objects in D_B that are outside R but have maximal optimality. Here, the optimality of a target object b \in D_B located outside R is defined as the number of the data objects from D_A that are inside R and meanwhile have their distances to b not exceeding d_c. When there is a tie, the accumulated distance from the data objects to b serves as the tie breaker, and the one with smaller distance has the better optimality. In this paper, we present the optimality metric, formalize the OLS query, and propose several algorithms for processing OLS queries efficiently. A comprehensive experimental evaluation has been conducted using both real and synthetic data sets to demonstrate the efficiency and effectiveness of the proposed algorithms.
机译:本文介绍并解决了一种新颖的空间查询类型,即最佳位置选择(OLS)搜索,该查询在现实生活中具有许多应用。给定数据对象集D_A,目标对象集D_B,空间区域R和多维空间中的临界距离d_c,OLS查询将检索D_B中位于R之外但具有最大最优性的那些目标对象。在此,位于R之外的D_B中的目标对象b \ in的最优性被定义为来自R_之内且距b不超过d_c的D_A的数据对象的数量。当出现平局时,从数据对象到b的累积距离用作平局决胜者,而距离较小的一方具有更好的最优性。在本文中,我们提出了最佳度量,对OLS查询进行形式化,并提出了几种可有效处理OLS查询的算法。使用真实和合成数据集进行了全面的实验评估,以证明所提出算法的效率和有效性。

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