Electrical Contacts Condition Diagnostics Based on Wireless Temperature Monitoring of Energized Equipment

Continuous exposure of electrical contact to elevated temperatures contributes to the downgrading of contact quality. Gradual degradation of contact surfaces induces developing conduction problems resulting in local temperature rise. The paper presents industrial case studies of continuous temperature monitoring of electrical contacts in energized equipment using wireless system with miniature temperature sensors. Wireless technology for on-line condition monitoring is applicable both as standalone system and with an interface with power quality monitoring system. Continuous on-line temperature monitoring combined with detail analysis of thermal contact behavior in correlation with the load current provides the means to evaluate physical condition of electrical contacts and detect abnormality. Practical applications of wireless temperature monitoring technique demonstrate its importance for properly and timely performed condition-based maintenance preventing possible disruption of electrical service. Observational data collected for several years of continuous contact temperature monitoring may be used for development of diagnostic and prognostic algorithms applicable for maintenance scheduling and better assets management.

[1]  W. W. Monges Intelligent Wireless Sensors for Industrial Manufacturing , 2000 .

[2]  M. Fahlander,et al.  Fiber-optic temperature measurements in galvanic baths , 1985 .

[3]  Mikael Nordman,et al.  An architecture for wireless sensors in distributed management of electrical distribution systems , 2004 .

[4]  B.H. Chudnovsky,et al.  Online condition monitoring and diagnostics of power distribution equipment , 2004, IEEE PES Power Systems Conference and Exposition, 2004..

[5]  E Gockenbach,et al.  MONITORING AND DIAGNOSIS SYSTEMS FOR DRY TYPE DISTRIBUTION TRANSFORMERS , 2001 .

[6]  D. Maxwell,et al.  Wireless Temperature Monitoring in Remote Systems Analog , 2002 .

[7]  D. Wolfe,et al.  Intelligent Wireless Condition-Based Maintenance , 2002 .

[8]  R. Gadh,et al.  ReWINS: a distributed multi-RF sensor control network for industrial automation , 2005, Symposium, 2005 Wireless Telecommunications.

[9]  F. Lisboa The Role of Thermal Imaging in a Predictive Maintenance Program , 2003 .

[10]  R. Cook Smart Infrared Temperature Sensors: Making Sense of the New Generation Integrating smart sensors into new or existing process control systems provides engineers with a new level of sophistication in temperature monitoring and control , 2000 .

[11]  Bing Jiang,et al.  Robotic monitoring of power systems , 2004, IEEE Transactions on Power Delivery.

[12]  B.H. Chudnovsky,et al.  On-line temperature monitoring of power distribution equipment , 2005, Record of Conference Papers Industry Applications Society 52nd Annual Petroleum and Chemical Industry Conference.