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Hair-oriented data model for spatio-temporal data representation

机译:面向头发的数据模型,用于时空数据表示

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Having an effective data structure regards to fast data changing is one of the most important demands in spatio-temporal data. Spatio-temporal data have special relationships in regard to spatial and temporal values. Both types of data are complex in terms of their numerous attributes and the changes exhibited over time. A data model that is able to increase the performance of data storage and inquiry responses from a spatio-temporal system is demanded. The structure of the relationships between spatio-temporal data mimics the biological structure of the hair, which has a 'Root' (spatial values) and a 'Shaft' (temporal values) and undergoes growth. This paper aims to show the mathematical formulation of a Hair-Oriented Data Model (HODM) for spatio-temporal data and to demonstrate the model's performance by measuring storage size and query response time. The experiment was conducted by using more than 178,000 records of climate change spatio-temporal data that were implemented in implemented in an object-relational database using nested tables. The data structure and operations are implemented by SQL statements that are related to the concepts of Object-Relational databases. The performances of file storage and execution query are compared using a tabular and normalized entity relationship model that engages various types of queries. The results show that HODM has a lower storage size and a faster query response time for all studied types of spatio-temporal queries. The significances of the work are elaborated by doing comparison with the generic data models. The experimental results showed that the proposed data model is easier to develop and more efficient. (C) 2016 Elsevier Ltd. All rights reserved.
机译:对于时空数据而言,拥有有效的数据结构以实现快速的数据更改是最重要的要求之一。时空数据在时空值方面具有特殊的关系。两种类型的数据在其众多属性和随时间变化方面都非常复杂。需要一种能够提高数据存储性能和来自时空系统的查询响应的数据模型。时空数据之间的关系结构模仿了头发的生物结构,该头发具有“根”(空间值)和“轴”(时间值)并经过生长。本文旨在展示针对时空数据的面向头发的数据模型(HODM)的数学公式,并通过测量存储大小和查询响应时间来证明该模型的性能。通过使用超过178,000条气候变化时空数据记录进行了该实验,这些记录是在使用嵌套表的对象关系数据库中实施的。数据结构和操作由与对象关系数据库的概念有关的SQL语句实现。使用涉及各种类型查询的表格和标准化实体关系模型比较文件存储和执行查询的性能。结果表明,对于所有研究的时空查询类型,HODM具有较小的存储大小和更快的查询响应时间。通过与通用数据模型进行比较,阐述了这项工作的重要性。实验结果表明,所提出的数据模型更易于开发且效率更高。 (C)2016 Elsevier Ltd.保留所有权利。

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