Digital Traveling-Wave Solutions I-Single-Phase Equivalents

A method of analysis of complex traveling-wave problems has been developed and reduced to a practical program. The program, presently limited to single-phase equivalent systems, can accommodate complex terminations, loop systems, general input waveshapes, and multiple arrester operation. The method...

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Published inTransactions of the American Institute of Electrical Engineers. Part 3, Power apparatus and systems Vol. 80; no. 3; pp. 812 - 818
Main Authors Barthold, L. O., Carter, G. K.
Format Journal Article
LanguageEnglish
Published IEEE 01.04.1961
Subjects
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ISSN0097-2460
DOI10.1109/AIEEPAS.1961.4501145

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Abstract A method of analysis of complex traveling-wave problems has been developed and reduced to a practical program. The program, presently limited to single-phase equivalent systems, can accommodate complex terminations, loop systems, general input waveshapes, and multiple arrester operation. The method is capable of extension to nonlinear resistive elements and to 3-phase systems. Immediate areas of application include arrester separation problems, simple switching surge probelms, and solutions for system recovery voltages. Areas of possible future applications include problems involving distributed-constant lines with nonuniform (tapered) surge impedance and certain steady-state problems (e.g., rectifier networks) which are difficult to solve analytically.
AbstractList A method of analysis of complex traveling-wave problems has been developed and reduced to a practical program. The program, presently limited to single-phase equivalent systems, can accommodate complex terminations, loop systems, general input waveshapes, and multiple arrester operation. The method is capable of extension to nonlinear resistive elements and to 3-phase systems. Immediate areas of application include arrester separation problems, simple switching surge probelms, and solutions for system recovery voltages. Areas of possible future applications include problems involving distributed-constant lines with nonuniform (tapered) surge impedance and certain steady-state problems (e.g., rectifier networks) which are difficult to solve analytically.
Author Barthold, L. O.
Carter, G. K.
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References barthold (ref2) 1960; 22
bewley (ref4) 1951
ref3
concordia (ref1) 1959; 21
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  start-page: 722
  year: 1960
  ident: ref2
  article-title: model techniques in the transient network analyzer solutions of power systems problems
  publication-title: Proceedings American Power Conference
– volume: 21
  start-page: 640
  year: 1959
  ident: ref1
  article-title: computers as aids to power system analysis
  publication-title: Proceedings American Power Conference
– start-page: 90
  year: 1951
  ident: ref4
  publication-title: Traveling Waves on Transmission Systems
– ident: ref3
  doi: 10.1109/AIEEPAS.1961.4501145
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Snippet A method of analysis of complex traveling-wave problems has been developed and reduced to a practical program. The program, presently limited to single-phase...
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StartPage 812
SubjectTerms Arresters
Fault currents
Impedance
Power system interconnection
Power system stability
Power system transients
Power transmission lines
Reflection
Transient analysis
Voltage
Title Digital Traveling-Wave Solutions I-Single-Phase Equivalents
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