Home| Contact Us| New Journals| Browse Journals| Journal Prices| For Authors|

Print ISSN:
Online ISSN:


  About JIO
  DLINE Portal Home
Home
Aims & Scope
Editorial Board
Current Issue
Next Issue
Previous Issue
Sample Issue
Upcoming Conferences
Self-archiving policy
Alert Services
Be a Reviewer
Publisher
Paper Submission
Subscription
Contact us
 
  How To Order
  Order Online
Price Information
Request for Complimentary
Print Copy
 
  For Authors
  Guidelines for Contributors
Online Submission
Call for Papers
Author Rights
 
 
RELATED JOURNALS
Journal of Digital Information Management (JDIM)
Journal of Multimedia Processing and Technologies (JMPT)
International Journal of Web Application (IJWA)

 

 
Progress in Systems and Telecommunication Engineering
 

Medium Voltage Switching System to Assess the Switching Process Time for Circuit Breakers
Shaker J. Gatan
Riga Technical University, Azenesiela in Harris model 12/1 Riga LV-1048 Latvia
Abstract: Vacuum interrupters are studied with a set of criteria and parameters. To offset the arching and chopping current and disruption over voltages, different alloys are employed. However, a few indicators of the medium voltage switching system is required. It is important to develop a switching process with semiconductors as a better technology implementation. This work describes the indicators and assess the switching process time for circuit breakers to reach better switching time. In this process we have connected three generators and power transformers in the power plants.
Keywords: Parameters of Switching Processing Times, Calculating Chopping Currents, Sequences of Switching Process Medium Voltage Switching System to Assess the Switching Process Time for Circuit Breakers
DOI:
Full_Text   PDF 1.90 MB   Download:   91  times
References:

[1] Glinkowski, M. T. Prediction, Modeling, Simulation and Mitigation of Switching Transients in Vacuum Switchgears, ABB Electric System Technology Institute, Raleigh, NC.
[2] Lafferty, J. M. (1980). Vacuum Arcs. Theory and Application, Wiley, p. 229.
[3] Mrano, M., Fujii, T., Nishikawa, H., Nishikawa, S., Okawa, M. (1994). Voltage Escalation in interrupting Inductive Current by vacuum Switches, IEEE Trans on Power Apparatus and Systems, vol. PAS-93, p. 264-271.
[4] Itoh, T., Murai, T., Ohkura, T., Yakami, T. (1972). Voltage Escalation in the Switching of The Motor Control Circuit by The Vacuum Contactor, IEEE Trans. on Power Apparatus and Systems, vol. PAS-91, p. 1897-1903.
[5] Panek, J., Fehrle, K. G. (1975). Over Voltage Phenomena, Associated with Virtual Current Chopping in Three Phase Circuitd, IEEE Trans. on Power Apparatus and Systems, vol. PAS-94, p. 1317-1325.
[6] Mrano, M., Yanabu, S., Ohashi, H., Ishizuka, H., Okazaki, T. (1977). Current Chopping Phenom ena of Medium Voltage Circuit Breakers, IEEE Trans. on Power Apparatus and Systems, vol. PAS -96, p. 143-149.
[7] Holmes, F. A. (1974). An Empirical Study of Current Chopping by Vacuum Arcs, Paper C74 088-1, IEEE PES Winter Meeting, New York, (January).
[8] Greenwood, A. N., Kurtz, D. R., Sofianek, I. C. (1971). A Guide to The Application of Vacuum Circuit Breakers, IEEE Trans. on Power Apparatus and Systems, vol. PAS-90, p. 1589-1597.
[9] Murai, Y., Nitta, T., Takami, T., Itoh, T. (1974). Protection of Motor from Switching Surge by Vacuum Switch, IEEE Trans. on Power Apparatus and Systems, vol. PAS-93, p. 1472-1477.
[10] Greenwood, A. N. (1960). The Effect Current Chopping in Circuit Breakers on Network and Transformers, part II, Trans. AIEEE, vol. 79, Part III, p. 545-555.
[11] Tuohy, E. J., Panek, J. (1977). Chopping of Transformer Magnetising Currents: part I: Single-Phase Transformere, paper No. F77, IEEE PES Winter, New York, (February).
[12] Buss, E. W., Dugan, R. C., Lyons, P. C. (1977). Special Considerations for Mining Operations, IEEE IAS Annual Meeting Conference Record, paper 31-A, p. 796-775.
[13] Yokkura, K., Masuda, S., Nishikawa, H., Okawa, M., Ohahi, H. (1980). Multiple Restriking Voltage Effect in a Vacuum Circuit Breaker on Motor Insulation, Paper No. 80SM 697-3, IEEE PES Summer Meeting, Minnesota.
[14] IEEE Committee Report, Impulse Voltage Strength of AC Rotating Machines, paper No. 81WM 182-5, IEEEPES winter, Atlanta Georgia 1981.
[15] Harris, L. P. (1978). A Mathematical Model of Cathode Spot Operation, In: 8th International Symposium on Discharges and Electrical in Vacuum Interrupters, Albuquerque, NM, USA.
[16] Gatan, S. J. (2016). Synchronizing Switching Times of Vacuum Interrupters for Medium Voltage-Switchboards` Techniques, IEEE 2016 Lodz University, Poland.
[17] Mertz, hard., W., Grimes, M. (2012). Fast Opening Switch Approach for High-Voltage Vacuum Tube Protection Application, In: 2012 IEEE International Power Modulator and High Voltage Conference (IPMHVC), p. 308-311.
[18] Childs, S. E., Greenwood, A. N., Sulivan, J. S. (1983). Events Associated with Zero current Passage During the Rapid Communication of a Vacuum Arc, IEEE.


Home | Aim & Scope | Editorial Board | Author Guidelines | Publisher | Subscription | Previous Issue | Contact Us |Upcoming Conferences|Sample Issues|Library Recommendation Form|

 

Copyright © 2011 dline.info