时间对齐

Anton Dignös, Michael H. Böhlen, J. Gamper
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引用次数: 60

摘要

为了处理间隔时间戳数据,提出了序列语义。本文提出了一种关系代数解决方案,该方案提供了对序列语义的三个属性的本机支持:快照可约性、扩展快照可约性和更改保存。我们引入了两个时间原语:时间分裂器和时间对齐器,并定义了使用这些原语的规则,以将时间代数的操作符简化为它们的非时间对立物。我们的解决方案通过间隔调整和时间戳传播来支持有序语义的三个属性。我们在PostgreSQL内核中实现了时间原语和约简规则,以获得本地数据库对处理间隔时间戳数据的支持。支持是全面的,包括外部连接、反连接以及谓词和函数在参数关系的时间间隔内的聚合。实现和经验评估证实了我们的解决方案的有效性和可扩展性,该解决方案利用了现有的数据库查询优化技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Temporal alignment
In order to process interval timestamped data, the sequenced semantics has been proposed. This paper presents a relational algebra solution that provides native support for the three properties of the sequenced semantics: snapshot reducibility, extended snapshot reducibility, and change preservation. We introduce two temporal primitives, temporal splitter and temporal aligner, and define rules that use these primitives to reduce the operators of a temporal algebra to their nontemporal counterparts. Our solution supports the three properties of the sequenced semantics through interval adjustment and timestamp propagation. We have implemented the temporal primitives and reduction rules in the kernel of PostgreSQL to get native database support for processing interval timestamped data. The support is comprehensive and includes outer joins, antijoins, and aggregations with predicates and functions over the time intervals of argument relations. The implementation and empirical evaluation confirms effectiveness and scalability of our solution that leverages existing database query optimization techniques.
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