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Microgrid Modeling and Fuel Savings Opportunities Through Direct Load Control
Name
IECon2018.pdf
Description
Accepted version
Size
1.05 MB
Format
Adobe PDF
Checksum (MD5)
a78cc35a5c2fa7f14fe0065031f6249b
Author(s) • • •
Shabshab, Spencer C.
Nowocin, J. Kendall
Lindahl, Peter
Leeb, Steven B.
Date Issued
October 2018
Publisher
IEEE
Citation
Shabshab, Spencer C., Nowocin, J. Kendall, Lindahl, Peter and Leeb, Steven B. 2018. "Microgrid Modeling and Fuel Savings Opportunities Through Direct Load Control."
Version
Author's final manuscript
Abstract
© 2018 IEEE. Small microgrids can derive their electrical power from a variety of energy resources. Some of these microgrids, including U.S. Military Forward Operating Bases (FOBs), use diesel generators as the primary or sole resource. In almost all cases, efficient utilization of generation resources is a high priority. This is particularly so for FOBs, for which diesel fuel resupplies come at remarkable monetary, logistical, and safety costs. Increasing the fuel efficiency of such microgrids requires not only incremental improvements to generation and load services, but also a higher-level understanding of how these components interact. This study of a typical U.S. Army FOB characterizes its power system, which is powered by diesel generators and has a load profile dominated by distributed environmental control units (ECUs). The study contributes an actionable simulation model of this power system and uses it to identify an opportunity for energy savings through appropriate scheduling of the ECUs.
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Creative Commons Attribution-Noncommercial-Share Alike
Persistent DSpace Link
DOI of Published Version
10.1109/iecon.2018.8591850