Analyzing Mission Impact of Military Installations Microgrid for Resilience

This article develops a method to model, analyze, and design military microgrids with the objective to improve their resilience in the face of disconnections from the larger electrical grid. Military microgrids provide power to installation and base facilities to enable base mission objective accomp...

Full description

Bibliographic Details
Main Authors: Christopher J. Peterson, Douglas L. Van Bossuyt, Ronald E. Giachetti, Giovanna Oriti
Format: Article
Language:English
Published: MDPI AG 2021-09-01
Series:Systems
Subjects:
Online Access:https://www.mdpi.com/2079-8954/9/3/69
Description
Summary:This article develops a method to model, analyze, and design military microgrids with the objective to improve their resilience in the face of disconnections from the larger electrical grid. Military microgrids provide power to installation and base facilities to enable base mission objective accomplishments that are related to national security. Previous research, tools, and methods for microgrid design and assessment do not adequately address resilience in terms of accomplishing mission objectives and instead primarily focus on economic outcomes. This article proposes a novel metric to quantify microgrid resilience in terms of its ability to minimize the impact of power disruption on missions supported by the microgrid. The metric is used in a novel design method to ensure an islanded military microgrid can continue operations while disconnected for a two-week duration. Our model examines the ability to continue mission operations subject to various microgrid disruptions as well as equipment reliability.
ISSN:2079-8954