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首页> 外文期刊>IEEE Transactions on Knowledge and Data Engineering >Designing access methods for bitemporal databases
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Designing access methods for bitemporal databases

机译:设计双时态数据库的访问方法

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摘要

By supporting the valid and transaction time dimensions, bitemporal databases represent reality more accurately than conventional databases. The authors examine the issues involved in designing efficient access methods for bitemporal databases, and propose the partial-persistence and the double-tree methodologies. The partial-persistence methodology reduces bitemporal queries to partial persistence problems for which an efficient access method is then designed. The double-tree methodology "sees" each bitemporal data object as consisting of two intervals (a valid-time and a transaction-time interval) and divides objects into two categories according to whether the right endpoint of the transaction time interval is already known. A common characteristic of both methodologies is that they take into account the properties of each time dimension. Their performance is compared with a straightforward approach that "sees" the intervals associated with a bitemporal object as composing one rectangle, which is stored in a single multidimensional access method. Given that some limited additional space is available, the experimental results show that the partial-persistence methodology provides the best overall performance, especially for transaction timeslice queries. For those applications that require ready, off-the-shelf, access methods, the double-tree methodology is a good alternative.
机译:通过支持有效时间和交易时间维度,比传统数据库更精确地表示了时态数据库。作者研究了为时态数据库设计有效访问方法所涉及的问题,并提出了部分持久性和双树方法。部分持久性方法将双时查询简化为部分持久性问题,然后针对该问题设计了一种有效的访问方法。双树方法将每个位时数据对象“视为”由两个间隔(有效时间间隔和事务时间间隔)组成,并根据事务时间间隔的正确端点是否已知将对象分为两类。两种方法的共同特点是它们考虑了每个时间维度的属性。将它们的性能与一种简单的方法进行比较,该方法“看到”与一个时空对象相关的间隔,并构成一个矩形,该矩形存储在单个多维访问方法中。考虑到可用的有限附加空间,实验结果表明,部分持久性方法提供了最佳的总体性能,尤其是对于事务时间片查询。对于那些需要现成的现成访问方法的应用程序,双树方法是一个很好的选择。

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