Title :
Application of Model Predictive Control for Active Load Management in a Distributed Power System With High Wind Penetration
Author :
Zong, Yi ; Kullmann, Daniel ; Thavlov, Anders ; Gehrke, Oliver ; Bindner, Henrik W.
Author_Institution :
Nat. Lab. for Sustainable Energy, Riso DTU, Roskilde, Denmark
fDate :
6/1/2012 12:00:00 AM
Abstract :
This paper introduces an experimental platform (SYSLAB) for the research on advanced control and power system communication in distributed power systems and one of its components-an intelligent office building (PowerFlexHouse), which is used to investigate the technical potential for active load management. It also presents in detail how to implement a thermal model predictive controller (MPC) for the heaters´ power consumption prediction in the PowerFlexHouse. It demonstrates that this MPC strategy can realize load shifting, and using good predictions in MPC-based control, a better matching of demand and supply can be achieved. With this demand side control study, it is expected that MPC strategy for active load management can dramatically raise energy efficiency and improve grid reliability, when there is a high penetration of intermittent energy resources in the power system.
Keywords :
distributed power generation; load management; power distribution reliability; power grids; predictive control; wind power plants; PowerFlexHouse; active load management; distributed power systems; grid reliability; intelligent office building; intermittent energy resources; power consumption prediction; power system communication; thermal model predictive controller; wind penetration; Buildings; Meteorology; Power systems; Predictive models; Resistance heating; Temperature measurement; Active load management; distributed power system; flexible consumption; model predictive control; wind power penetration;
Journal_Title :
Smart Grid, IEEE Transactions on
DOI :
10.1109/TSG.2011.2177282