DocumentCode :
1098239
Title :
Transformation of mechanized locomotives into semi-autonomous machines
Author :
Stolarczyk, Larry G. ; Smoker, Kurt A.
Author_Institution :
Stolar Inc., Raton, NM, USA
Volume :
28
Issue :
4
fYear :
1992
Firstpage :
900
Lastpage :
906
Abstract :
Computerized communications (radio) command, control, and monitoring (C4M) technology has been developed to replace mechanical controllers on 35 ton locomotives (loci). The C4M technology uses medium frequency (MF) underground radio technology developed in prior US Bureau of Mines research to achieve high-quality voice and data transmission in the mining complex. Robust electrical conductors such as rail, air/hydro pipe, and cable provide a signal transmission medium with an attenuation rate of 4 dB/304 m (1000 ft). The signal-to-noise ratio (SNR) exceeds 30 dB in the transmission system. A surface supervisory computer communicates with the C4 M controller via MF radio to create a semiautonomous locomotive. Diagnostic algorithms monitor locomotive sensors and locate failures in the propulsion system. The C4M controller has reduced propulsion system diagnostic time from an average of 40 to less than 10 min. The increased machine availability time contributes 17000 tons of additional ore to the trains´ haul age potential each year
Keywords :
computerised monitoring; digital control; electric locomotives; machine control; mining; radio links; railways; telecontrol; voice communication; C4M controller; MF; SNR; USA; algorithms; computerised monitoring; conductors; data transmission; digital control; failures; locomotives; mining; propulsion; radio links; railways; semiautonomous locomotive; signal-to-noise ratio; supervisory computer; telecontrol; underground radio; voice transmission; Attenuation; Communication system control; Computerized monitoring; Conductors; Data communication; Frequency; Propulsion; Radio control; Rails; Robustness;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/28.148458
Filename :
148458
Link To Document :
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