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Voltage Distribution Effects of Non Unif

Suat Ilhan, Aydogan Ozdemir

2026eninsulator stringsvoltage distributioncontaminationstray capacitancepower transmissionovervoltage

Abstract

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This study addresses the effects of non-uniform units in suspension strings used in the Turkish national power transmission systems, specifically focusing on the voltage distribution alterations that arise from replacing damaged units with stronger fog-type insulators. The primary objective is to analyze the voltage distribution along 10-unit and 22-unit suspension strings under various conditions, including different tower designs and contamination scenarios, employing power frequency voltages and lightning impulse voltages for the simulations. Extensive simulations were conducted to illustrate how the voltage distribution is impacted by the characteristics of the units, stray capacitances, and contamination levels. The results indicate significant changes in voltage distribution which correlate with the type and arrangement of the insulators in the string, emphasizing the necessity for careful consideration during maintenance and replacements in the transmission system. This research contributes valuable insights into optimizing the design and maintenance practices for insulators, ultimately aiming to minimize transient outages due to insulation problems within the system.

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Cite This Work

@article{bc06e4b6-abec-4770-bfd6-d47a9ed46714,
  title={Voltage Distribution Effects of Non Unif},
  author={Suat Ilhan and Aydogan Ozdemir},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - Voltage Distribution Effects of Non Unif
AU  - Suat Ilhan
AU  - Aydogan Ozdemir
PY  - 2026
LA  - en
ER  -

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