Your browser does not support JavaScript!
http://iet.metastore.ingenta.com
1887

Z-transform electromagnetic transient analysis in power systems

Z-transform electromagnetic transient analysis in power systems

For access to this article, please select a purchase option:

Buy article PDF
£12.50
(plus tax if applicable)
Buy Knowledge Pack
10 articles for £75.00
(plus taxes if applicable)

IET members benefit from discounts to all IET publications and free access to E&T Magazine. If you are an IET member, log in to your account and the discounts will automatically be applied.

Learn more about IET membership 

Recommend Title Publication to library

You must fill out fields marked with: *

Librarian details
Name:*
Email:*
Your details
Name:*
Email:*
Department:*
Why are you recommending this title?
Select reason:
 
 
 
 
 
IEE Proceedings C (Generation, Transmission and Distribution) — Recommend this title to your library

Thank you

Your recommendation has been sent to your librarian.

The paper develops a new electromagnetic transient formulation for multiconductor power transmission lines based on the z-transform. Beginning with the basic relationships of propagation in the frequency domain, the successive steps of z-transform analysis are developed leading to recursive sequences for solution in the time domain. The case of lossless propagation is considered initially in introducing z-transform analysis in its application to transmission-line electromagnetic transient evaluations, following which a general formulation is derived into which series-path line parameter frequency-dependence is directly reflected. Test analyses based on a z-transform model complemented by a simplified equivalent-source representation and applied to a 160 km, 400 kV untransposed single-circuit transmission line confirm the high inherent accuracy and low computing-time requirements of the method.

References

    1. 1)
      • J.K. Snelson . Propagation of travelling waves on transmission lines: frequency-dependent parameters. IEEE Trans. , 1 , 85 - 90
    2. 2)
      • W.D. Humpage , K.P. Wong , T.T. Nguyen . Time-convolution and z-transform methods of electromagnetic transient analysis in power systems. IEE Proc. C, Gen., Trans. & Dist. , 6 , 386 - 394
    3. 3)
      • W.I. Bowman , J.M. McNamee . Development of equivalent matrix circuits for long untransposed transmission lines. IEEE Trans. , 625 - 632
    4. 4)
      • M.J. Battison , S.J. Day , N. Mullineux , K.C. Parton , J.R. Reed . Some effects of the frequency dependence of transmissionline parameters. Proc. IEE , 7 , 1209 - 1216
    5. 5)
      • H.W. Dommel . Digital computer solution of electromagnetic transients in single-and multi-phase networks. IEEE Trans. , 4 , 388 - 396
    6. 6)
      • J.P. Bickford , P.S. Doepel . Calculation of switching transients with particular reference to line energisation. Proc. IEE , 4 , 465 - 477
    7. 7)
      • R.Ch.G. Bergmann , P.J.M. Ponsioen . Calculation of electrical transients in power systems: untransposed transmission line with frequency-dependent parameters. Proc. IEE , 8 , 764 - 770
    8. 8)
      • J.P. Bickford , N. Mullineaux , J.R. Reed . (1976) , Computation of power system transients.
    9. 9)
      • T.T. Nguyen , K.P. Wong , W.D. Humpage . Impulse sampling sequences in time-convolution electromagnetic transient analysis in power systems. Electr. Power Syst. Res.
    10. 10)
      • R.A. Gabel , R.A. Roberts . (1973) , Signals and Linear Systems.
    11. 11)
      • M.J. Battisson , S.J. Day , N. Mullineux , K.C. Parton , J.R. Reed . Calculation of transients on transmission lines with sequential switching. Proc. IEE , 3 , 587 - 590
    12. 12)
      • A. Budner . Introduction of frequency-dependent line parameters into an electromagnetic transient program. IEEE Trans. , 1 , 88 - 95
    13. 13)
      • L.M. Wedepohl . Application of matrix methods to the solution of travelling-wave phenomena in polyphase systems. Proc. IEE , 12 , 2200 - 2212
    14. 14)
      • A. Semlyen , A. Roth . Calculation of exponential propagation step responses. IEEE Trans. , 3 , 667 - 671
    15. 15)
      • W.D. Humpage , K.P. Wong , T.T. Nguyen . Development of z-transform electromagnetic transient analysis methods for multi-node power networks. IEE Proc. C, Gen., Trans. & Dist. , 6 , 379 - 385
    16. 16)
      • A. Semlyen , A. Dabuleanu . Fast and accurate switching-transient calculations on transmission lines with ground return using recursive convolutions. IEEE Trans. , 2 , 561 - 569
    17. 17)
      • A. Ametani . A highly efficient method for calculating transmission line transients. IEEE Trans. , 1545 - 1549
    18. 18)
      • M.J. Battison , S.J. Day , N. Mullineux , K.C. Parton , J.R. Reed . Calculation of switching phenomena in power systems. Proc. IEE , 4 , 478 - 486
    19. 19)
      • D.P. Carroll , F. Nozari . An efficient computer method for simulating transients in transmission lines with frequency-dependent parameters. IEEE Trans. , 4 , 1167 - 1174
    20. 20)
      • Dommel, H.W.: `A method for solving transient phenomena in multi-phase systems', Proceedings of the Power Systems Computation Conference, 1966, Report 5.8.
http://iet.metastore.ingenta.com/content/journals/10.1049/ip-c.1980.0058
Loading

Related content

content/journals/10.1049/ip-c.1980.0058
pub_keyword,iet_inspecKeyword,pub_concept
6
6
Loading
This is a required field
Please enter a valid email address