Fire probability risk ranking of vegetation species in vegetation high impedance faults

Author:

Ozansoy CagilORCID,Sianaki Omid Ameri

Publisher

Elsevier BV

Subject

Electrical and Electronic Engineering,Energy Engineering and Power Technology

Reference24 articles.

1. Victorian Government. Powerline bushfire safety program - vegetation conduction ignition test report and data. https://discover.data.vic.gov.au/dataset/powerline-bushfire-safety-program-vegetation-conduction-ignition-test-report (accessed 22 July 2019.

2. Marxsen T. Vegetation conduction ignition test report - final. Marxsen Consulting Pty Ltd; 2015. Accessed: Nov-2016. [Online]. Available: https://discover.data.vic.gov.au/dataset/powerline-bushfire-safety-program-vegetation-conduction-ignition-test-report.

3. Goodfellow J, Crudele D. Optimal design of overhead distribution systems – understanding touch potential risks due to tree-to-conductor contacts on distribution circuits. Electric Power Research Institute. Report No 1016219, December 2007.

4. Goodfellow J, Crudele D. Overhead distribution vegetation challenges: touch potential voltage at ground level and aloft in trees contacting energized distribution conductors. Palo Alto, CA: Electric Power Research Institute. Report No 1018463, December 2008.

5. Wischkaemper JA, Benner CL, Russell BD. Electrical characterization of vegetation contacts with distribution conductors - investigation of progressive fault behavior. In: 2008 IEEE/PES transmission and distribution conference and exposition, 21–24 April 2008; 2008. p. 1-8. doi: 10.1109/TDC.2008.4517149.

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