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An algebraic framework for temporal attribute characteristics

机译:时间属性特征的代数框架

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Most real-world database applications manage temporal data, i.e., data with associated time references that capture a temporal aspect of the data, typically either when the data is valid or when the data is known. Such applications abound in, e.g., the financial, medical, and scientific domains. In contrast to this, current database management systems offer preciously little built-in query language support for temporal data management. This situation persists although an active temporal database research community has demonstrated that application development can be simplified substantially by built-in temporal support. This paper's contribution is motivated by the observation that existing temporal data models and query languages generally make the same rigid assumption about the semantics of the association of data and time, namely that if a subset of the time domain is associated with some data then this implies the association of any further subset with the data. This paper offers a comprehensive, general framework where alternative semantics may co-exist. It supports so-called malleable and atomic temporal associations, in addition to the conventional ones mentioned above, which are termed constant. To demonstrate the utility of the framework, the paper defines a characteristics-enabled temporal algebra, termed CETA, which defines the traditional relational operators in the new framework. This contribution demonstrates that it is possible to provide built-in temporal support while making less rigid assumptions about the data and without jeopardizing the degree of the support. This moves temporal support closer to practical applications.
机译:大多数现实世界的数据库应用程序都管理时间数据,即具有关联时间参考的数据,这些时间参考通常会在数据有效或已知时捕获数据的时间方面。这样的应用在例如金融,医学和科学领域中比比皆是。与此相反,当前的数据库管理系统几乎没有为时态数据管理提供内置查询语言支持。尽管活跃的时态数据库研究团体已经证明,内置的时态支持可以大大简化应用程序开发,但是这种情况仍然存在。本文的贡献源于以下观察:现有的时态数据模型和查询语言通常对数据和时间的关联语义做出相同的严格假设,即,如果时域的子集与某些数据相关联,则意味着任何其他子集与数据的关联。本文提供了一个广泛的,通用的框架,其中替代语义可以共存。除了上述常规的关联之外,它还支持所谓的可延展的和原子的时间关联。为了演示该框架的实用性,本文定义了一种启用了特征的时间代数,称为CETA,它在新框架中定义了传统的关系运算符。此贡献表明,可以在不对数据进行严格假设的情况下提供内置的临时支持,而不会损害支持的程度。这使临时支持更接近于实际应用。

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