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CONFERENCE ELECTRIC SYSTEM RESILIENCY AND HARDENING June 910, 2015 Edison Place Washington, DC Conference Workshop DEVELOPING AN EVALUATION FRAMEWORK TO COMPARE UTILITY SYSTEM HARDENING OPTIONS June
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How to Fill out Electric System Resiliency and:

01
Begin by gathering all relevant information about the electric system that you are evaluating. This may include data on power sources, infrastructure, and potential vulnerabilities.
02
Identify potential risks and vulnerabilities that the electric system may face. Consider factors such as extreme weather events, cyber threats, and aging infrastructure.
03
Analyze the impact of these risks on the electric system. Evaluate potential consequences such as power outages, disruptions to critical services, and economic losses.
04
Develop strategies and solutions to enhance the resiliency of the electric system. This may involve implementing backup power sources, improving infrastructure, enhancing cybersecurity measures, and promoting renewable energy sources.
05
Prioritize the identified strategies based on their effectiveness, feasibility, and cost. Consider the different needs and requirements of various stakeholders, such as residential users, businesses, and government agencies.
06
Create a comprehensive plan that outlines the steps to be taken to implement the chosen strategies. This plan should include a timeline, budget, and responsible parties for each action.
07
Regularly review and update the electric system resiliency plan to adapt to changing circumstances, technological advancements, and new risks.
08
Continuously monitor the resiliency of the electric system through regular assessments and simulations to ensure its effectiveness in mitigating potential risks.

Who Needs Electric System Resiliency and:

01
Utility Companies: Electric system resiliency is crucial for utility companies as it helps them maintain a reliable supply of electricity, reduce the frequency and duration of power outages, and ensure the continuity of critical services.
02
Businesses: Businesses rely on a stable electricity supply to operate efficiently. Resilient electric systems help minimize disruptions, protect valuable equipment, and avoid financial losses due to power outages.
03
Residential Users: Reliable electricity is essential for everyday activities, from lighting homes to powering essential appliances. Resilient electric systems provide homeowners with the confidence that their electricity needs will be met, even during challenging situations.
04
Government Agencies: Government agencies need electric system resiliency to ensure the continuity of essential services, such as emergency response operations, healthcare facilities, and public safety systems.
05
Critical Infrastructure: Infrastructures like hospitals, communication networks, transportation systems, and water treatment plants rely heavily on electricity. Enhancing the resiliency of the electric system helps safeguard these critical infrastructures during emergencies.
06
Communities: Resilient electric systems provide communities with the ability to quickly recover from disruptions, support economic development, and maintain a high standard of living.
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Electric system resiliency refers to the ability of an electric system to anticipate, prepare for, recover from, and adapt to system disturbances or disruptions.
Electric utilities and grid operators are required to file electric system resiliency plans.
Electric system resiliency plans are typically filled out using a standardized template provided by regulatory authorities.
The purpose of electric system resiliency plans is to ensure the reliability and stability of the electric grid in the face of disruptions or emergencies.
Information on risk assessment, mitigation measures, recovery plans, and response protocols must be reported on electric system resiliency plans.
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