A linear filtering theory-based approach for load shedding

Lorena Chavarria-Baez, Rosaura Palma-Orozco

Producción científica: Capítulo del libro/informe/acta de congresoContribución a la conferenciarevisión exhaustiva

Resumen

A Datastream Management System (DSMS) allows applications to query datastreams by specifying continuous queries (CQs). Unlike a traditional query in a Database Management System (DBMS), each CQ in the DSMS has to fulfill Quality of Service (QoS) requirements, such as tuple latency. In order to a CQ meets this quality parameter when the system is overloaded, it is necessary to discard some tuples, i.e., to perform a load shedding process. However, this is not an easy task since, such as reported in literature, it is essential to know when and how adjust the quality of CQs at runtime and how many tuples must be dropped. Any dynamic system is subjected to conditions of internal and external behavior that modify its operation and control. This implies that the system can be observable and controllable. In this paper we present a modern control-theory based approach to deal with some issues of load shedding in DSMSs. The results are based on the state space, described by a discrete stochastic estimator and noise characterization having a linear complexity.

Idioma originalInglés
Título de la publicación alojadaProceedings of the 2013 IEEE 14th International Conference on Information Reuse and Integration, IEEE IRI 2013
EditorialIEEE Computer Society
Páginas704-707
Número de páginas4
ISBN (versión impresa)9781479910502
DOI
EstadoPublicada - 2013
Evento2013 IEEE 14th International Conference on Information Reuse and Integration, IEEE IRI 2013 - San Francisco, CA, Estados Unidos
Duración: 14 ago. 201316 ago. 2013

Serie de la publicación

NombreProceedings of the 2013 IEEE 14th International Conference on Information Reuse and Integration, IEEE IRI 2013

Conferencia

Conferencia2013 IEEE 14th International Conference on Information Reuse and Integration, IEEE IRI 2013
País/TerritorioEstados Unidos
CiudadSan Francisco, CA
Período14/08/1316/08/13

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