Combining Support Vector Machines and Segmentation Algorithms for Efficient Anomaly Detection: A Petroleum Industry Application

Marti, Luis; Sanchez-Pi, Nayat; Manuel Molina, Jose; Bicharra Garcia, Ana Cristina; DeLaPuerta, JG; Ferreira, IG; Bringas, PG; Klett, F; Abraham, A.; DeCarvalho, ACPLF; Herrero, A; Baruque, B; Quintian, H; Corchado, E

Abstract

Anomaly detection is the problem of finding patterns in data that do not conform to expected behavior. Similarly, when patterns are numerically distant from the rest of sample, anomalies are indicated as outliers. Anomaly detection had recently attracted the attention of the research community for real-world applications. The petroleum industry is one of the application contexts where these problems are present. The correct detection of such types of unusual information empowers the decision maker with the capacity to act on the system in order to correctly avoid, correct, or react to the situations associated with them. In that sense, heavy extraction machines for pumping and generation operations like turbomachines are intensively monitored by hundreds of sensors each that send measurements with a high frequency for damage prevention. For dealing with this and with the lack of labeled data, in this paper we propose a combination of a fast and high quality segmentation algorithm with a one-class support vector machine approach for efficient anomaly detection in turbomachines. As result we perform empirical studies comparing our approach to other methods applied to benchmark problems and a real-life application related to oil platform turbomachinery anomaly detection.

Más información

Título según WOS: ID WOS:000343754200027 Not found in local WOS DB
Título de la Revista: INTELLIGENT METHODS IN COMPUTING, COMMUNICATIONS AND CONTROL
Volumen: 299
Editorial: SPRINGER INTERNATIONAL PUBLISHING AG
Fecha de publicación: 2014
Página de inicio: 269
Página final: 278
DOI:

10.1007/978-3-319-07995-0_27

Notas: ISI