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Window Specification over Data Streams
Author(s) -
Kostas Patroumpas,
Timos Sellis
Publication year - 2006
Publication title -
lecture notes in computer science
Language(s) - English
Resource type - Book series
SCImago Journal Rank - 0.249
H-Index - 400
eISSN - 1611-3349
pISSN - 0302-9743
ISBN - 3-540-46788-2
DOI - 10.1007/11896548_35
Subject(s) - computer science , tuple , window (computing) , timestamp , data stream , data stream mining , programming language , semantics (computer science) , query optimization , query language , relational algebra , theoretical computer science , data type , relational database , data mining , real time computing , telecommunications , mathematics , discrete mathematics , operating system
Several query languages have been proposed for managing data streams in modern monitoring applications. Continuous queries expressed in these languages usually employ windowing constructs in order to extract finite portions of the potentially unbounded stream. Explicitly or not, window specifications rely on ordering. Usually, timestamps are attached to all tuples flowing into the system as a means to provide ordered access to data items. Several window types have been implemented in stream prototype systems, but a precise definition of their semantics is still lacking. In this paper, we describe a formal framework for expressing windows in continuous queries over data streams. After classifying windows according to their basic characteristics, we give algebraic expressions for the most significant window types commonly appearing in applications. As an essential step towards a stream algebra, we then propose formal definitions for the windowed analogs of typical relational operators, such as join, union or aggregation, and we identify several properties useful to query optimization

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