Optimizing Microgrid Architecture on Department of Defense Installations

Abstract

Energy managers are faced with the challenge of upgrading their installation microgrids in a tight fiscal environment, while meeting the challenges of incorporating higher percentages of renewable energy sources and providing better energy assurance during commercial grid failures. Incorporating renewable sources of energy into a microgrid is challenging due to the intermittent nature of supply. Using historical solar data and simulated forecasts for wind data, we formulate and exercise a capital planning optimization model designed to choose the best subset of existing and potential energy sources to maximize microgrid islanding time. Islanding time is defined as the amount of time demands can be met without connection to the commercial power grid, and it is one measure of an installation s power resiliency. Using sensitivity analysis, we show quantitatively how increases in the capital planning budget has a direct positive impact on islanding time. However, the model also identifies areas where large increases in budget yield proportionally smaller returns in islanding time. Additionally, energy storage can provide increases in islanding time, but there are diminishing returns as the storage capacity is increased. Finally, we quantitatively show that increasing reliance on renewable power decreases sensitivity to changes in the price of fuel.

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Document Details

Document Type
Technical Report
Publication Date
Sep 01, 2014
Accession Number
ADA620638

Entities

People

  • Nicholas A. Ulmer

Organizations

  • Naval Postgraduate School

Tags

Communities of Interest

  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Air Force
  • Business Administration
  • Climate Change Adaptation
  • Electric Power Production
  • Electrical Grids
  • Energy
  • Energy Consumption
  • Energy Management
  • Energy Production
  • Energy Storage
  • Hybrid Power
  • Load Monitoring
  • National Security
  • Solar Energy
  • Solar Panels
  • Wind Energy
  • Wind Turbines

Readers

  • Defense Acquisition Program Management
  • Energy Conservation and Renewable Energy Engineering.
  • Mathematics or Statistics