DocumentCode
3589402
Title
Reliable analysis of monitoring power and power interruption controller in underground refuge system
Author
Fengying, Ma
Author_Institution
Inst. of Electr. Eng. & Autom., Shandong Polytech. Univ., Jinan, China
fYear
2012
Firstpage
5406
Lastpage
5411
Abstract
The government enforces the refuge system in coal mine since 2013. The underground refuge monitoring is crucial for coalmine safety. In order to assess the reliability of the underground monitoring power and power interruption controller in the coalmine refuge system, the accelerated life tests under constant stress were presented based on the exponential distribution. Through a comparative analysis of lots of factors, the temperature was chosen as the constant accelerated stress parameter. With regard to the data statistical analysis, the type-I censoring sample method was put forward. The mathematical model of the coal mine monitoring power and power interruption controller were established and the average life expectancy curve was obtained under different temperatures through the analysis of experimental data. The results demonstrated that the mathematical model and the average life expectancy curve were fit for the actual very well. It is concluded that the reliability study of the monitoring power provides an important foundation for the coalmine refuge monitoring system.
Keywords
coal; condition monitoring; curve fitting; exponential distribution; life testing; mining industry; power control; reliability; safety; sampling methods; temperature; accelerated life test; average life expectancy curve; coal mine; coal mine safety; comparative analysis; constant accelerated stress parameter; data statistical analysis; exponential distribution; power interruption controller; power monitoring reliability; temperature parameter; type-I censoring sample method; underground refuge monitoring; underground refuge system; Acceleration; Interrupters; Life estimation; Monitoring; Power system reliability; Reliability; Stress; Accelerated life test; Coalmine safety; Power reliability; Type-I censoring; underground refuge monitoring;
fLanguage
English
Publisher
ieee
Conference_Titel
Control Conference (CCC), 2012 31st Chinese
ISSN
1934-1768
Print_ISBN
978-1-4673-2581-3
Type
conf
Filename
6390883
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