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Detection of rail switch passages through image processing on railway line and use of condition-monitoring approach


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dc.contributor.author Karaköse, Mehmet
dc.contributor.author Yaman, Orhan
dc.contributor.author Akın, Erhan
dc.date.accessioned 2017-02-16T13:15:09Z
dc.date.available 2017-02-16T13:15:09Z
dc.date.issued 2016-09
dc.identifier.citation Karaköse, M., Yaman, O. ve Akın, E. (2016). Detection of rail switch passages through image processing on railway line and use of condition-monitoring approach. International Conference on Advanced Technology & Sciences (ICAT'16). (ss.99-105). Konya, Turkey: ATScience Academic Publishing Group, Selcuk University. tr_TR
dc.identifier.uri http://hdl.handle.net/11508/9305
dc.description.abstract Today, railway transportation is one of the transport modes commonly used. Compared to other transport modes, railway traffic is highly critical. Multiple railway vehicles run constantly on one or two lines. Rail switch passages are used to prevent locomotives from colliding with one another and avoid traffic disruptions. Through switch passages, locomotives pass from one line to another. Friction between rail and wheels on switch passages is considerably high. This friction leads to failures on switch passages. Unless these failures are diagnosed early and remedied, significant accidents emerge. In this study, a new approach based on image processing has been presented for detection of rail switch passages on railway lines. A test vehicle has been created in order to test the proposed approach and apply it on a real-time system. Railway line is monitored by digital cameras fixed on this test vehicle. Imageprocessing approach is developed on the real-time images captured from the railway line and the switch passages on the line are detected. The image-processing approach consists of three main parts including pre-processing, feature extraction and processing of the features obtained. At the pre-processing stage, the basic image processing methods are used. At the feature extraction stage, Canny edge extraction algorithm is used and hence the edges in the image are detected. Hough transform method is used at the stage of processing of the extracted features. Following Hough transform stage, straight lines and angles of these lines are obtained on the image. Taking into account the angle of each straight line, the junction points of the lines are calculated. Thus, rail switch passage and switch types are detected. The proposed image-processing approach is highly fast and real time-based. Compared to the existing studies in the literature, it is seen that the proposed method gives fast and successful results. This study intends to diagnose the failures on switch passages early and prevent potential accidents. tr_TR
dc.description.sponsorship This work was supported by the TUBITAK (The Scientific and Technological Research Council of Turkey) under Grant No: 114E202. tr_TR
dc.language.iso İngilizce tr_TR
dc.rights info:eu-repo/semantics/openAccess tr_TR
dc.subject Fırat Üniversitesi Kütüphanesi::TEKNOLOJİ tr_TR
dc.subject.ddc Railway tr_TR
dc.subject.ddc Condition monitoring tr_TR
dc.subject.ddc Fault detection tr_TR
dc.subject.ddc Image processing tr_TR
dc.subject.ddc Railroad switches tr_TR
dc.title Detection of rail switch passages through image processing on railway line and use of condition-monitoring approach tr_TR
dc.type Bildiri - Yayımlanmış tr_TR
dc.contributor.YOKID TR13023 tr_TR
dc.contributor.YOKID TR223516 tr_TR
dc.contributor.YOKID TR25466 tr_TR
dc.relation.publishinghaddress Konya, Turkey tr_TR
dc.relation.publishinghouse ATScience Academic Publishing Group, Selcuk University tr_TR
dc.identifier.pages 99;105
dc.identifier.bookname International Conference on Advanced Technology & Sciences (ICAT'16) tr_TR
dc.published.type Uluslararası Katılımlı tr_TR


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University of Fırat
23119
Elazığ-Merkez
TURKEY