Socio-Technical Modeling to Manage Power Distribution for Microgrid Systems With Limited Production Capacity

Author:

Suk Hailie1,Sharma Ayushi2,Nellippallil Anand Balu3,Das Ashok2,Hall John1

Affiliation:

1. Systems Realization Laboratory at University at Buffalo; Department of Mechanical and Aerospace Engineering, University at Buffalo-SUNY, Bell Hall 201, Buffalo, NY 14260

2. SunMoksha Power, Pvt. Ltd., 768, 14th Cross Road, 1st Phase, J. P., Nagar, Bengaluru, Karnataka 560078, India

3. Systems Realization Laboratory at Florida Institute of Technology; Department of Mechanical and Civil Engineering, Florida Institute of Technology, 150 W. University Boulevard., Melbourne, FL 32901

Abstract

Abstract The quality of life (QOL) in rural communities is improved through electrification. Microgrids can provide electricity in areas where grid access to electricity is infeasible. Still, insufficient power capacity hinders the very progress that microgrids promote. Therefore, we propose a decision-making framework to manage power distribution based on its impact on the rural QOL. Parameters are examined in this paper to represent the QOL pertaining to water, safety, education, and leisure/social activities. Each parameter is evaluated based on condition, community importance, and energy dependence. A solution for power allocation is developed by executing the compromise decision support problem (cDSP) and exploring the solution space. Energy loads, such as those required for powering water pumps, streetlamps, and household devices, are prioritized in the context of the QOL. The technique also allows decision-makers to update the power distribution scheme as the dynamics between energy production and demand change over time. In this paper, we propose a framework for connecting QOL and power management. The flexibility of the approach is demonstrated using a problem with varying scenarios that may be time dependent. The work enables sustainable energy solutions that can evolve with community development.

Funder

National Science Foundation

Publisher

ASME International

Subject

Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment

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