Scheduling Post-disaster Repairs in Electricity Distribution Networks with Uncertain Repair Times

Author:

Tan Yushi1,Das Arindam K.2,Ahumada-Paras Mareldi1,Arabshahi Payman1,Kirschen Daniel S.1

Affiliation:

1. University of Washington, Seattle, WA, USA

2. Eastern Washington University, Cheney, WA, USA

Abstract

Natural disasters, such as hurricanes, large wind and ice storms, typically require the repair of a large number of com- ponents in electricity distribution networks. Since power cannot be restored before the completion of repairs, optimally scheduling the available crews to minimize the cu- mulative duration of the customer interruptions reduces the harm done to the affected community. We have previously proposed approximation algorithms to schedule post-disaster repairs in electricity distribution networks with complete damage information[1]. In this paper, we extend our pre- vious work to the case with incomplete damage information. We model this problem as scheduling a set of jobs with stochastic processing times on parallel identical machines in order to minimize the total weighted energization time. A linear programming (LP) based list scheduling pol- icy is proposed and then analyzed in terms of theoretical performance.

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Networks and Communications,Hardware and Architecture,Software

Reference20 articles.

1. Y.Tan F.Qiu A.K. Das D.S. Kirschen P. Arabshahi and J. Wang. Scheduling Post-Disaster Repairs in Electricity Distribution Networks. ArXiv e-prints arXiv:1702.08382 February2017. Y.Tan F.Qiu A.K. Das D.S. Kirschen P. Arabshahi and J. Wang. Scheduling Post-Disaster Repairs in Electricity Distribution Networks. ArXiv e-prints arXiv:1702.08382 February2017.

2. North American Electric Reliability Corporation. Hurricane Harvey Event Analysis Report. https: //www.nerc.com/pa/rrm/ea/Hurricane_Harvey_EAR_ DL/NERC_Hurricane_Harvey_EAR_20180309.pdf 2018. [Online;accessed29-March-2019]. North American Electric Reliability Corporation. Hurricane Harvey Event Analysis Report. https: //www.nerc.com/pa/rrm/ea/Hurricane_Harvey_EAR_ DL/NERC_Hurricane_Harvey_EAR_20180309.pdf 2018. [Online;accessed29-March-2019].

3. U.S. Energy Information Administation. Hurricane Harvey caused electric system outages and affected wind generation in Texas. https://www.eia.gov/ today in energy/detail.php?id=32892 2017.[Online; accessed 29-June-2018]. U.S. Energy Information Administation. Hurricane Harvey caused electric system outages and affected wind generation in Texas. https://www.eia.gov/ today in energy/detail.php?id=32892 2017.[Online; accessed 29-June-2018].

4. Performance of Electric Power Systems in the 2010–2011 Christchurch, New Zealand, Earthquake Sequence

5. Infrastructure Security and Energy Restoration Office of Electricity Delivery and Energy Reliability U.S. Department of Energy. Are view of power outages and restoration following theJune 2012 Derecho. http://energy.gov/sites/prod/files/Derecho% 202012_%20Review_0.pdf Aug2012. Infrastructure Security and Energy Restoration Office of Electricity Delivery and Energy Reliability U.S. Department of Energy. Are view of power outages and restoration following theJune 2012 Derecho. http://energy.gov/sites/prod/files/Derecho% 202012_%20Review_0.pdf Aug2012.

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