Title :
A novel strategy for failure-tolerant communication in smart grids
Author :
Nguyen, Cuong P. ; Flueck, Alexander J.
Author_Institution :
Syst. & Resource Planning Dept., New York Indep. Syst. Operator, Rensselaer, NY, USA
Abstract :
The goal of this paper is to present a robust survivability strategy for the communication network in smart grids when communication failure happens because (1) communication failure is inevitable, (2) communication failure can impact smart grid performance. A communication failure can be temporary or permanent. A temporary failure is often caused by electromagnetic interference, storms, obstructions, and other temporary factors while a permanent failure is usually due to terminal or transmitter breakdown. A communication failure causes temporary or permanent unavailability of the communication link. Thus, the message broadcasted from the sending device may never reach the intended receiving device. A simple but realistic strategy will be proposed to model communication failure in a smart grid simulation test bed. Then, a solution to overcome the communication failure will be presented. The strategy will be tested on the modified IEEE 34 node test feeder.
Keywords :
distribution networks; electromagnetic interference; fault tolerance; smart power grids; telecommunication network reliability; IEEE 34 node test feeder; communication failure; communication link; electromagnetic interference; failure tolerant communication; robust survivability strategy; smart grid simulation test bed; transmitter breakdown; Artificial intelligence; Communication networks; Multi-agent systems; Receivers; Smart grids; Switches; Smart grid; communication failure; communication latency; multi-agent systems;
Conference_Titel :
PES General Meeting | Conference & Exposition, 2014 IEEE
Conference_Location :
National Harbor, MD
DOI :
10.1109/PESGM.2014.6939516