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Distribution power system resiliency improvement using distributed generation and automated switching

I. Diahovchenko, G. Kandaperumal, A.K. Srivastava

6th IEEE International Conference on Energy Smart Systems - IEEE ESS 2019, Kiev (Ukraine). 17-19 April 2019


Summary:

The contemporary power distribution system is facing an increase in extreme weather events, cybersecurity threats and even physical threats such as terrorism. Therefore there is a growing interest towards resiliency estimation and improvement. In this paper the resiliency enhancement strategy by means of Distributed Energy Resources and Automated Switches is presented. Resiliency scores are calculated using Analytical Hierarchy Process. The developed algorithm was validated on the modified IEEE 123 node system. It provides the most resiliency feasible network that satisfies the primary goal of serving the critical loads.


Keywords: resiliency, distribution system, graph theory, distributed energy resources, analytic hierarchy process


DOI: DOI icon https://doi.org/10.1109/ESS.2019.8764185

Published in IEEE ESS 2019, pp: 1-6, ISBN: 978-1-7281-2161-1

Publication date: 2019-04-17.



Citation:
I. Diahovchenko, G. Kandaperumal, A.K. Srivastava, Distribution power system resiliency improvement using distributed generation and automated switching, 6th IEEE International Conference on Energy Smart Systems - IEEE ESS 2019, Kiev (Ukraine). 17-19 April 2019. In: IEEE ESS 2019: Conference proceedings, ISBN: 978-1-7281-2161-1

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