Title :
GECO: Global Event-Driven Co-Simulation Framework for Interconnected Power System and Communication Network
Author :
Lin, Hua ; Veda, Santhosh S. ; Shukla, Sandeep S. ; Mili, Lamine ; Thorp, James
Author_Institution :
Dept. of Electr. & Comput. Eng., Virginia Tech, Blacksburg, VA, USA
Abstract :
The vision of a smart grid is predicated upon pervasive use of modern digital communication techniques to today´s power system. As wide area measurements and control techniques are being developed and deployed for a more resilient power system, the role of communication network is becoming prominent. Power system dynamics gets influenced by the communication delays in the network. Therefore, extensive integration of power system and communication infrastructure mandates that the two systems be studied as a single distributed cyber-physical system. This paper proposes a power system and communication network co-simulation framework (GECO) using a global event-driven mechanism. The accuracy is tunable based on the time-scale requirements of the phenomena being studied. This co-simulation can improve the practical investigation of smart grid and evaluate wide area measurement and control schemes. As a case study, a communication-based backup distance relay protection scheme is co-simulated and validated on this co-simulation framework.
Keywords :
digital communication; discrete event simulation; power system control; power system interconnection; power system measurement; power system protection; power system simulation; smart power grids; GECO; communication delays; communication infrastructure; communication network; communication network co-simulation framework; communication-based backup distance relay protection scheme; control techniques; digital communication techniques; global event-driven co-simulation framework; interconnected power system; power system co-simulation framework; power system dynamic simulation; power system integration; resilient power system; single distributed cyber-physical system; smart grid; wide area measurements; Communication networks; Mathematical model; Power grids; Power system dynamics; Real time systems; Synchronization; Co-simulation; event-driven; wide area protection and control;
Journal_Title :
Smart Grid, IEEE Transactions on
DOI :
10.1109/TSG.2012.2191805