Microgrids with energy storage systems as a means to increase power resilience: An application to office buildings

Author:

Rosales-Asensio Enrique,de Simón-Martín Miguel,Borge-Diez David,Blanes-Peiró Jorge Juan,Colmenar-Santos AntonioORCID

Publisher

Elsevier BV

Subject

General Energy,Pollution,Mechanical Engineering,Building and Construction,Electrical and Electronic Engineering,Industrial and Manufacturing Engineering,Civil and Structural Engineering

Reference70 articles.

1. Combined heat and power provides energy resiliency to medical facilities: improvements to current tax credits can keep operations running, save fuel and money;Lubetsky,2014

2. Docket No. 39732 – notice of inquiry and workshop to examine issues related to the value of renewable and distributed energy resources in preparations for the 2016 Georgia power company integrated resource plan (IRP);Elder,2015

3. Distributed power generation in the United States;Thornton;Renew Sustain Energy Rev,2011

4. Critical & clean power: 7 reasons why PureCell® fuel cell systems are the right choice;Doosan Fuel Cell America,2014

5. Using State RPSS to promote resilient power at critical infrastructure facilities;Olinsky-Paul,2013

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