Title :
Multifunctional operation of a virtual power plant in an active distribution grid: Modelling approaches and first field test experiences from the SmartRegion Pellworm project
Author :
Koopmann, Simon ; Nicolai, Steffen ; Schnettler, Armin
Author_Institution :
Inst. for High-Voltage Technol., RWTH Aachen Univ., Aachen, Germany
Abstract :
In the project SmartRegion Pellworm, a virtual power plant (VPP) consisting of renewable power plants, battery storage systems and electric storage heaters on household level is simulated, analyzed and demonstrated in real operation. This paper presents the modelling approach developed in the project to simulate and evaluate a VPP pursuing different operation strategies. These include a market driven, a grid supportive, a local supply oriented and a multifunctional strategy. A key component of the modelling approach is a mixed integer linear programming model for the optimization of VPP operation planning. The simulation results for the real test case on the German island Pellworm show that multifunctional operation is a promising solution to serve multiple stakeholders. However, market driven operation proves to be most profitable in the given market framework. First insights from the field test show how the simulated operation strategies are transferred to an energy management system for online VPP operation.
Keywords :
battery storage plants; distributed power generation; energy management systems; integer programming; linear programming; power distribution economics; power distribution planning; power generation economics; power generation planning; power grids; power markets; power system management; profitability; thermal energy storage; German island; SmartRegion Pellworm project; VPP; active distribution grid; battery storage system; electric storage heater; energy management system; local supply oriented; market driven operation; mixed integer linear programming model; optimization; power system planning; profitability; renewable power plant; stakeholder; virtual power plant; Batteries; Biological system modeling; Brain modeling; Business; Load modeling; Portfolios; Power generation; Virtual power plants; demonstration; energy management system; energy storage; field test; flexible loads; mixed integer linear programming;
Conference_Titel :
Innovative Smart Grid Technologies Conference Europe (ISGT-Europe), 2014 IEEE PES
Conference_Location :
Istanbul
DOI :
10.1109/ISGTEurope.2014.7028949