DocumentCode :
3010648
Title :
On-line monitoring and prediction for transmission line sag
Author :
Ren Lijia ; Li Hong ; Liu Yan
Author_Institution :
North Power Supply Co., Shanghai Municipal Electr. Power Co., Shanghai, China
fYear :
2012
fDate :
23-27 Sept. 2012
Firstpage :
813
Lastpage :
817
Abstract :
A major factor in determining the sag, and consequently the ground clearance of the line, is the measurement the tension of line. The Dynamic Line Rating (DLR) system has been developed and installed on some existing transmission lines, which helps to monitor the on-line sag, predict short-term sag, and give the risk assessment of the line. The tension monitors were installed between dead-end insulators and the dead-end structure. Through the measured tension, the sag in a dead-end span may be calculated with little error. To predict the sags of the transmission line in the near future accurately, this paper proposes the chaos theory to predict such sag serial times. This paper reconstructs the phase space for the sag time series by C-C method. The C-C method is easier to implement, and less demanding computationally. The singular value decomposition chaotic method is presented to predict the chaotic sag time series and the thermal overload risk of a line with a DLR system installed. As tests, the data analysis shows that the proposed method can reflect the varying rule of transmission line sag, and improve the accuracy of sag prediction effectively.
Keywords :
chaos; data analysis; insulators; power supply quality; power transmission lines; risk management; singular value decomposition; time series; C-C method; DLR system; chaos theory; chaotic sag time series prediction; data analysis; dead-end insulators; dead-end structure; dynamic line rating system; ground clearance; online monitoring; online sag monitoring; risk assessment; sag serial time prediction; short-term sag prediction; singular value decomposition chaotic method; tension monitors; thermal overload risk; transmission line sag prediction; Conductors; Delay; Monitoring; Power system dynamics; Power transmission lines; Time series analysis; Transmission line measurements; Conductor Sag; Conductor tension; Dynamic Line Rating (DLR); chaos; risk assessment; sag prediction; transmission line;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Condition Monitoring and Diagnosis (CMD), 2012 International Conference on
Conference_Location :
Bali
Print_ISBN :
978-1-4673-1019-2
Type :
conf
DOI :
10.1109/CMD.2012.6416272
Filename :
6416272
Link To Document :
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