Smart Grid Test-bed Brochure
Energy Systems Research Laboratory
Energy Systems Research Laboratory conducts federally funded research projects related to electrical energy systems on land, in space and at sea. Research projects related to physics-based modeling for the design and optimization of electric drives in their operating environment. Part of this work utilizes online dynamic parameter optimization for controller development in energy systems. Our research facilities include a Smart Grid test-bed for smart grid research on utility systems and movable vessels. This is a unique facility in the USA at the laboratory scale totaling a power capability of up to 72-kW in ac and dc sources. The facility also includes all types of alternate and conventional energy resources and load emulators.
Research Grants & Funding
Organisations
Featured Stories
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Smart Green Factory – Senior Design Spring 2012
Summary of the project: The objective of this project was to develop a scaled prototype of a factory that optimizes... -
Wide Area Measurement System for Smart Grid Applications Involving Hybrid Energy Sources
This paper presents a model and experimental verification for a complete scenario of a proposed wide area measurement system (WAMS)... -
Top Executives form NTT Facilities in Japan and USA Visit Our Smart Grid Test-Bed
The officers of NTT japan visits Energy Systems Research laboratory and inspects the research about Smart Grid. -
DC-Bus Voltage Control Technique for Parallel-Integrated Permanent Magnet Wind Generation Systems
This paper presents a dc-bus voltage control technique for a new power conversion topology feasible for parallel integrated permanent magnet... -
A Three-Phase High Frequency Semi-Controlled Battery Charging Power Converter for Plug-In Hybrid Electric Vehicles
This paper presents a novel analysis, design, and implementation of a battery charging three-phase high frequency semicontrolled power converter feasible... -
Development of High-Performance Grid-Connected Wind Energy Conversion System for Optimum Utilization of Variable Speed Wind Turbines
This project presents an improvement technique for the power quality of the electrical part of a wind generation system with...
Latest Headlines
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Laboratory-Based Smart Power System, Part II: Control, Monitoring and Protection
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Laboratory-Based Smart Power System, Part I: Design and System Development
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Real-Time Energy Management Algorithm for Mitigation of Pulse Loads in Hybrid Microgrids
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Control enhancement of power conditioning units for high quality PV systems
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A Wavelet Filtering Scheme for Noise and Vibration Reduction in High-frequency Signal Injection-Based Sensorless Control of PMSM at Low Speed
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Smart Green Factory – Senior Design Spring 2012
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Mahmoud Amin’s Doctoral Dissertation Defense
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Featured Stories
Wide Area Measurement System for Smart Grid Applications Involving Hybrid Energy Sources
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Featured Stories
Top Executives form NTT Facilities in Japan and USA Visit Our Smart Grid Test-Bed
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DC-Bus Voltage Control Technique for Parallel-Integrated Permanent Magnet Wind Generation Systems
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DoE-FPL Consortium Managers Visit Our Smart Grid Test Bed
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Executives and Leaders from FPL Visit Our Smart Grid Test Bed Facility
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A Three-Phase High Frequency Semi-Controlled Battery Charging Power Converter for Plug-In Hybrid Electric Vehicles
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Presentations at the 2011 IEEE PES General Meeting in Detroit
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Hardware implementation of Real Time Online Optimization of Motor Drives
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Development of High-Performance Grid-Connected Wind Energy Conversion System for Optimum Utilization of Variable Speed Wind Turbines
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Smart Grid Test Bed- 360 View
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Synchrophasors for Real Time Measurement of Electrical Quantites
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Smart Grid Systems Test Bed
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Futuristic Power Systems
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