DocumentCode :
685610
Title :
Ferroresonance phenomenon in CFE, its origin and effects
Author :
Martinez, E. ; Antonova, G. ; Olguin, M.
Author_Institution :
CFE, Mexico
fYear :
2013
fDate :
8-11 April 2013
Firstpage :
450
Lastpage :
466
Abstract :
Technological improvements and energy exchange between and within electrical systems require more availability and reliability, and the use of communication channels and measuring devices helps to achieve this goal. Coupling Capacitor Voltage Transformers (CCVTs) traditionally have been essential for power systems communications using Power Line Carrier (PLC). Normally, CCVT devices have an adequate ferroresonance protection. However, CCVTs failures due to environmental conditions and their lack of accuracy for energy billing led some electrical companies like the Mexican company Comision Federal de Electricidad (CFE) to gradual replacement of CCVT devices by the Inductive Voltage Transformers (IVT), which are installed now in bus bars of electrical substations. In addition to satisfy communications needs PLCs were replaced by the optical fiber communications. As IVT devices do not have anti ferroresonance elements, ferroresonance phenomenon started to appear more frequently during operation maneuvers in several electrical substations. This paper presents background on CCVT explosions, patterns of behavior before failures, Phasor Measurement Unit (PMU) records for system effects, measurements and simulation of typical ferroresonance occurrences. Ferroresonance mitigation techniques and possible protection schemes are also discussed.
Keywords :
busbars; electricity supply industry; ferroresonance; optical fibre communication; phasor measurement; potential transformers; power system protection; power system reliability; substations; CCVT devices replacement; CCVT explosion; CFE; Comisión Federal de Electricidad; IVT; Mexican company; PLC; PMU records; communication channel; coupling capacitor voltage transformer; electrical substation bus bar; electrical system; energy billing; energy exchange; ferroresonance mitigation technique; inductive voltage transformer; measuring device; operation maneuvers; optical fiber communication; phasor measurement unit; power line carrier; power systems communication; Capacitance; Explosions; Ferroresonance; Power transformer insulation; RLC circuits; Surges; damping reactor; ferroresonance; inductive voltage transformer; phasor measurement unit;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Protective Relay Engineers, 2013 66th Annual Conference for
Conference_Location :
College Station, TX
Print_ISBN :
978-1-4799-5758-3
Type :
conf
DOI :
10.1109/CPRE.2013.6822057
Filename :
6822057
Link To Document :
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