DocumentCode :
1893891
Title :
Agent-based control of a DC MicroGrid
Author :
Moore, D.H. ; Murray, J.M. ; Maturana, F.P. ; Wendel, T. ; Loparo, Kenneth A.
Author_Institution :
Case Western Reserve Univ., Cleveland, OH, USA
fYear :
2013
fDate :
21-23 May 2013
Firstpage :
1
Lastpage :
6
Abstract :
A lab-scale hardware DC MicroGrid system has been designed and built as part of a suite of electrical grid simulation environments. It is intended for use as an educational tool and in research as a testbed for control strategy development. The testbed has the capability to rapidly transition between hardware and software simulation of the DC MicroGrid system and consists of three components: Software in the Loop Simulation (SILS), Hardware in the Loop Simulation (HILS), and Hardware. SILS uses a PLC emulator and a Simulink model to simulate the plant and control system. In HILS, the emulator is replaced with an actual hardware controller. In the transition from HILS to hardware, a software switch shifts the PLC I/O from the model to the PLC I/O modules connected to the DC MicroGrid. In tandem with the PLC ladder code, Rockwell Automation´s agent-based distributed control software enables the investigation of complex interactions between autonomous decision makers on the grid.
Keywords :
distributed power generation; multi-agent systems; power system control; power system simulation; PLC I/O modules; PLC emulator; PLC ladder code; Rockwell Automation´s agent-based distributed control software; Simulink model; actual hardware controller; agent-based control; autonomous decision makers; control strategy development; control system; educational tool; electrical grid simulation environments; hardware in the loop simulation; hardware simulation; lab-scale hardware DC microgrid system; plant system; software in the loop simulation; software simulation; software switch; Hardware; Microgrids; Software packages; Student members; Switches; Agents; DC; batteries; controller; distributed; energy storage; microgrid; power conversion; power grid; simulation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Energytech, 2013 IEEE
Conference_Location :
Cleveland, OH
Type :
conf
DOI :
10.1109/EnergyTech.2013.6645293
Filename :
6645293
Link To Document :
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