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PhD Proposal: Modeling & Analysis of Commercial Building Electrical Loads for Demand Side Management
Start Date: 12/8/2015Start Time: 1:00 PM
End Date: 12/8/2015End Time: 3:00 PM
Event Description
Ph.D. Research Proposal of Jonathan Berardino on Modeling and Analysis of Commercial Building Electrical Loads for Demand Side Management
 
Advisor
Dr. Chika Nwankpa
 
Abstract
In recent years there has been a push in the electric power industry for more customer involvement in the electricity markets. Traditionally the end user has played a passive role in the planning and operation of the power grid. However, many energy markets have begun opening up opportunities to consumers who wish to commit a certain amount of their electrical load under various demand response (DR) or direct load control programs. The potential benefits of more demand participation include reduced operating costs and new revenue opportunities for the consumer, as well as more reliable and secure operations for the utilities. The management of these load resources creates challenges and opportunities to the end user that were not present in previous market structures.
 
This work proposes a methodology for analyzing the behavior of commercial-type building electrical loads and their capacity for supporting demand side management actions. This work is motivated by the need for accurate and dynamic tools to aid in the advancement of demand side operations. A dynamic load model is proposed for capturing the response of controllable building loads. Building-specific load forecasting techniques are developed, with particular focus paid to the integration of building management system (BMS) information. These approaches are tested using Drexel University building data. The application of building-specific load forecasts and dynamic load modeling to the optimal scheduling of multi-building systems in the energy market is proposed. Sources of potential load uncertainty are introduced in the proposed energy management problem formulation in order to investigate the impact on the resulting load schedule.
Contact Information:
Name: Electrical and Computer Engineering Department
Phone: (215) 895-2241
Email: ece@drexel.edu
Electrical and Computer Engineering Department
Location:
Power Lab, Curtis 048
Audience:
  • Graduate Students
  • Faculty

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